Bitcoin Core Fuzz Coverage Report

Coverage Report

Created: 2026-03-24 13:57

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/bitcoin/src/net_processing.cpp
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// Copyright (c) 2009-2010 Satoshi Nakamoto
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// Copyright (c) 2009-present 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 <net_processing.h>
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#include <addrman.h>
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#include <arith_uint256.h>
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#include <banman.h>
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#include <blockencodings.h>
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#include <blockfilter.h>
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#include <chain.h>
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#include <chainparams.h>
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#include <common/bloom.h>
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#include <consensus/amount.h>
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#include <consensus/params.h>
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#include <consensus/validation.h>
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#include <core_memusage.h>
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#include <crypto/siphash.h>
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#include <deploymentstatus.h>
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#include <flatfile.h>
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#include <headerssync.h>
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#include <index/blockfilterindex.h>
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#include <kernel/types.h>
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#include <logging.h>
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#include <merkleblock.h>
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#include <net.h>
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#include <net_permissions.h>
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#include <netaddress.h>
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#include <netbase.h>
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#include <netmessagemaker.h>
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#include <node/blockstorage.h>
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#include <node/connection_types.h>
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#include <node/protocol_version.h>
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#include <node/timeoffsets.h>
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#include <node/txdownloadman.h>
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#include <node/txorphanage.h>
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#include <node/txreconciliation.h>
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#include <node/warnings.h>
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#include <policy/feerate.h>
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#include <policy/fees/block_policy_estimator.h>
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#include <policy/packages.h>
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#include <policy/policy.h>
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#include <primitives/block.h>
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#include <primitives/transaction.h>
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#include <private_broadcast.h>
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#include <protocol.h>
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#include <random.h>
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#include <scheduler.h>
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#include <script/script.h>
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#include <serialize.h>
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#include <span.h>
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#include <streams.h>
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#include <sync.h>
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#include <tinyformat.h>
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#include <txmempool.h>
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#include <uint256.h>
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#include <util/check.h>
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#include <util/strencodings.h>
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#include <util/time.h>
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#include <util/trace.h>
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#include <validation.h>
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#include <algorithm>
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#include <array>
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#include <atomic>
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#include <compare>
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#include <cstddef>
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#include <deque>
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#include <exception>
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#include <functional>
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#include <future>
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#include <initializer_list>
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#include <iterator>
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#include <limits>
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#include <list>
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#include <map>
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#include <memory>
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#include <optional>
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#include <queue>
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#include <ranges>
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#include <ratio>
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#include <set>
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#include <span>
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#include <typeinfo>
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#include <utility>
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using kernel::ChainstateRole;
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using namespace util::hex_literals;
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TRACEPOINT_SEMAPHORE(net, inbound_message);
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TRACEPOINT_SEMAPHORE(net, misbehaving_connection);
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/** Headers download timeout.
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 *  Timeout = base + per_header * (expected number of headers) */
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static constexpr auto HEADERS_DOWNLOAD_TIMEOUT_BASE = 15min;
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static constexpr auto HEADERS_DOWNLOAD_TIMEOUT_PER_HEADER = 1ms;
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/** How long to wait for a peer to respond to a getheaders request */
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static constexpr auto HEADERS_RESPONSE_TIME{2min};
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/** Protect at least this many outbound peers from disconnection due to slow/
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 * behind headers chain.
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 */
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static constexpr int32_t MAX_OUTBOUND_PEERS_TO_PROTECT_FROM_DISCONNECT = 4;
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/** Timeout for (unprotected) outbound peers to sync to our chainwork */
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static constexpr auto CHAIN_SYNC_TIMEOUT{20min};
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/** How frequently to check for stale tips */
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static constexpr auto STALE_CHECK_INTERVAL{10min};
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/** How frequently to check for extra outbound peers and disconnect */
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static constexpr auto EXTRA_PEER_CHECK_INTERVAL{45s};
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/** Minimum time an outbound-peer-eviction candidate must be connected for, in order to evict */
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static constexpr auto MINIMUM_CONNECT_TIME{30s};
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/** SHA256("main address relay")[0:8] */
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static constexpr uint64_t RANDOMIZER_ID_ADDRESS_RELAY = 0x3cac0035b5866b90ULL;
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/// Age after which a stale block will no longer be served if requested as
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/// protection against fingerprinting. Set to one month, denominated in seconds.
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static constexpr int STALE_RELAY_AGE_LIMIT = 30 * 24 * 60 * 60;
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/// Age after which a block is considered historical for purposes of rate
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/// limiting block relay. Set to one week, denominated in seconds.
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static constexpr int HISTORICAL_BLOCK_AGE = 7 * 24 * 60 * 60;
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/** Time between pings automatically sent out for latency probing and keepalive */
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static constexpr auto PING_INTERVAL{2min};
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/** The maximum number of entries in a locator */
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static const unsigned int MAX_LOCATOR_SZ = 101;
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/** The maximum number of entries in an 'inv' protocol message */
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static const unsigned int MAX_INV_SZ = 50000;
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/** Limit to avoid sending big packets. Not used in processing incoming GETDATA for compatibility */
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static const unsigned int MAX_GETDATA_SZ = 1000;
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/** Number of blocks that can be requested at any given time from a single peer. */
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static const int MAX_BLOCKS_IN_TRANSIT_PER_PEER = 16;
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/** Default time during which a peer must stall block download progress before being disconnected.
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 * the actual timeout is increased temporarily if peers are disconnected for hitting the timeout */
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static constexpr auto BLOCK_STALLING_TIMEOUT_DEFAULT{2s};
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/** Maximum timeout for stalling block download. */
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static constexpr auto BLOCK_STALLING_TIMEOUT_MAX{64s};
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/** Maximum depth of blocks we're willing to serve as compact blocks to peers
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 *  when requested. For older blocks, a regular BLOCK response will be sent. */
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static const int MAX_CMPCTBLOCK_DEPTH = 5;
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/** Maximum depth of blocks we're willing to respond to GETBLOCKTXN requests for. */
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static const int MAX_BLOCKTXN_DEPTH = 10;
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static_assert(MAX_BLOCKTXN_DEPTH <= MIN_BLOCKS_TO_KEEP, "MAX_BLOCKTXN_DEPTH too high");
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/** Size of the "block download window": how far ahead of our current height do we fetch?
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 *  Larger windows tolerate larger download speed differences between peer, but increase the potential
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 *  degree of disordering of blocks on disk (which make reindexing and pruning harder). We'll probably
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 *  want to make this a per-peer adaptive value at some point. */
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static const unsigned int BLOCK_DOWNLOAD_WINDOW = 1024;
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/** Block download timeout base, expressed in multiples of the block interval (i.e. 10 min) */
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static constexpr double BLOCK_DOWNLOAD_TIMEOUT_BASE = 1;
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/** Additional block download timeout per parallel downloading peer (i.e. 5 min) */
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static constexpr double BLOCK_DOWNLOAD_TIMEOUT_PER_PEER = 0.5;
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/** Maximum number of headers to announce when relaying blocks with headers message.*/
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static const unsigned int MAX_BLOCKS_TO_ANNOUNCE = 8;
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/** Minimum blocks required to signal NODE_NETWORK_LIMITED */
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static const unsigned int NODE_NETWORK_LIMITED_MIN_BLOCKS = 288;
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/** Window, in blocks, for connecting to NODE_NETWORK_LIMITED peers */
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static const unsigned int NODE_NETWORK_LIMITED_ALLOW_CONN_BLOCKS = 144;
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/** Average delay between local address broadcasts */
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static constexpr auto AVG_LOCAL_ADDRESS_BROADCAST_INTERVAL{24h};
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/** Average delay between peer address broadcasts */
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static constexpr auto AVG_ADDRESS_BROADCAST_INTERVAL{30s};
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/** Delay between rotating the peers we relay a particular address to */
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static constexpr auto ROTATE_ADDR_RELAY_DEST_INTERVAL{24h};
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/** Average delay between trickled inventory transmissions for inbound peers.
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 *  Blocks and peers with NetPermissionFlags::NoBan permission bypass this. */
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static constexpr auto INBOUND_INVENTORY_BROADCAST_INTERVAL{5s};
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/** Average delay between trickled inventory transmissions for outbound peers.
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 *  Use a smaller delay as there is less privacy concern for them.
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 *  Blocks and peers with NetPermissionFlags::NoBan permission bypass this. */
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static constexpr auto OUTBOUND_INVENTORY_BROADCAST_INTERVAL{2s};
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/** Maximum rate of inventory items to send per second.
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 *  Limits the impact of low-fee transaction floods. */
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static constexpr unsigned int INVENTORY_BROADCAST_PER_SECOND{14};
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/** Target number of tx inventory items to send per transmission. */
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static constexpr unsigned int INVENTORY_BROADCAST_TARGET = INVENTORY_BROADCAST_PER_SECOND * count_seconds(INBOUND_INVENTORY_BROADCAST_INTERVAL);
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/** Maximum number of inventory items to send per transmission. */
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static constexpr unsigned int INVENTORY_BROADCAST_MAX = 1000;
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static_assert(INVENTORY_BROADCAST_MAX >= INVENTORY_BROADCAST_TARGET, "INVENTORY_BROADCAST_MAX too low");
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static_assert(INVENTORY_BROADCAST_MAX <= node::MAX_PEER_TX_ANNOUNCEMENTS, "INVENTORY_BROADCAST_MAX too high");
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/** Average delay between feefilter broadcasts in seconds. */
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static constexpr auto AVG_FEEFILTER_BROADCAST_INTERVAL{10min};
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/** Maximum feefilter broadcast delay after significant change. */
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static constexpr auto MAX_FEEFILTER_CHANGE_DELAY{5min};
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/** Maximum number of compact filters that may be requested with one getcfilters. See BIP 157. */
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static constexpr uint32_t MAX_GETCFILTERS_SIZE = 1000;
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/** Maximum number of cf hashes that may be requested with one getcfheaders. See BIP 157. */
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static constexpr uint32_t MAX_GETCFHEADERS_SIZE = 2000;
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/** the maximum percentage of addresses from our addrman to return in response to a getaddr message. */
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static constexpr size_t MAX_PCT_ADDR_TO_SEND = 23;
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/** The maximum number of address records permitted in an ADDR message. */
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static constexpr size_t MAX_ADDR_TO_SEND{1000};
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/** The maximum rate of address records we're willing to process on average. Can be bypassed using
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 *  the NetPermissionFlags::Addr permission. */
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static constexpr double MAX_ADDR_RATE_PER_SECOND{0.1};
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/** The soft limit of the address processing token bucket (the regular MAX_ADDR_RATE_PER_SECOND
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 *  based increments won't go above this, but the MAX_ADDR_TO_SEND increment following GETADDR
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 *  is exempt from this limit). */
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static constexpr size_t MAX_ADDR_PROCESSING_TOKEN_BUCKET{MAX_ADDR_TO_SEND};
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/** The compactblocks version we support. See BIP 152. */
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static constexpr uint64_t CMPCTBLOCKS_VERSION{2};
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/** For private broadcast, send a transaction to this many peers. */
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static constexpr size_t NUM_PRIVATE_BROADCAST_PER_TX{3};
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/** Private broadcast connections must complete within this time. Disconnect the peer if it takes longer. */
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static constexpr auto PRIVATE_BROADCAST_MAX_CONNECTION_LIFETIME{3min};
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// Internal stuff
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namespace {
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/** Blocks that are in flight, and that are in the queue to be downloaded. */
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struct QueuedBlock {
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    /** BlockIndex. We must have this since we only request blocks when we've already validated the header. */
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    const CBlockIndex* pindex;
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    /** Optional, used for CMPCTBLOCK downloads */
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    std::unique_ptr<PartiallyDownloadedBlock> partialBlock;
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};
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/**
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 * Data structure for an individual peer. This struct is not protected by
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 * cs_main since it does not contain validation-critical data.
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 *
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 * Memory is owned by shared pointers and this object is destructed when
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 * the refcount drops to zero.
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 *
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 * Mutexes inside this struct must not be held when locking m_peer_mutex.
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 *
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 * TODO: move most members from CNodeState to this structure.
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 * TODO: move remaining application-layer data members from CNode to this structure.
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 */
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struct Peer {
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    /** Same id as the CNode object for this peer */
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    const NodeId m_id{0};
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    /** Services we offered to this peer.
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     *
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     *  This is supplied by CConnman during peer initialization. It's const
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     *  because there is no protocol defined for renegotiating services
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     *  initially offered to a peer. The set of local services we offer should
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     *  not change after initialization.
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     *
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     *  An interesting example of this is NODE_NETWORK and initial block
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     *  download: a node which starts up from scratch doesn't have any blocks
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     *  to serve, but still advertises NODE_NETWORK because it will eventually
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     *  fulfill this role after IBD completes. P2P code is written in such a
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     *  way that it can gracefully handle peers who don't make good on their
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     *  service advertisements. */
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    const ServiceFlags m_our_services;
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    /** Services this peer offered to us. */
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    std::atomic<ServiceFlags> m_their_services{NODE_NONE};
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    //! Whether this peer is an inbound connection
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    const bool m_is_inbound;
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    /** Protects misbehavior data members */
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    Mutex m_misbehavior_mutex;
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    /** Whether this peer should be disconnected and marked as discouraged (unless it has NetPermissionFlags::NoBan permission). */
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    bool m_should_discourage GUARDED_BY(m_misbehavior_mutex){false};
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    /** Protects block inventory data members */
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    Mutex m_block_inv_mutex;
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    /** List of blocks that we'll announce via an `inv` message.
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     * There is no final sorting before sending, as they are always sent
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     * immediately and in the order requested. */
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    std::vector<uint256> m_blocks_for_inv_relay GUARDED_BY(m_block_inv_mutex);
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    /** Unfiltered list of blocks that we'd like to announce via a `headers`
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     * message. If we can't announce via a `headers` message, we'll fall back to
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     * announcing via `inv`. */
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    std::vector<uint256> m_blocks_for_headers_relay GUARDED_BY(m_block_inv_mutex);
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    /** The final block hash that we sent in an `inv` message to this peer.
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     * When the peer requests this block, we send an `inv` message to trigger
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     * the peer to request the next sequence of block hashes.
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     * Most peers use headers-first syncing, which doesn't use this mechanism */
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    uint256 m_continuation_block GUARDED_BY(m_block_inv_mutex) {};
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    /** Set to true once initial VERSION message was sent (only relevant for outbound peers). */
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    bool m_outbound_version_message_sent GUARDED_BY(NetEventsInterface::g_msgproc_mutex){false};
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    /** The pong reply we're expecting, or 0 if no pong expected. */
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    std::atomic<uint64_t> m_ping_nonce_sent{0};
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    /** When the last ping was sent, or 0 if no ping was ever sent */
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    std::atomic<std::chrono::microseconds> m_ping_start{0us};
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    /** Whether a ping has been requested by the user */
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    std::atomic<bool> m_ping_queued{false};
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    /** Whether this peer relays txs via wtxid */
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    std::atomic<bool> m_wtxid_relay{false};
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    /** The feerate in the most recent BIP133 `feefilter` message sent to the peer.
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     *  It is *not* a p2p protocol violation for the peer to send us
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     *  transactions with a lower fee rate than this. See BIP133. */
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    CAmount m_fee_filter_sent GUARDED_BY(NetEventsInterface::g_msgproc_mutex){0};
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    /** Timestamp after which we will send the next BIP133 `feefilter` message
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      * to the peer. */
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    std::chrono::microseconds m_next_send_feefilter GUARDED_BY(NetEventsInterface::g_msgproc_mutex){0};
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    struct TxRelay {
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        mutable RecursiveMutex m_bloom_filter_mutex;
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        /** Whether we relay transactions to this peer. */
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        bool m_relay_txs GUARDED_BY(m_bloom_filter_mutex){false};
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        /** A bloom filter for which transactions to announce to the peer. See BIP37. */
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        std::unique_ptr<CBloomFilter> m_bloom_filter PT_GUARDED_BY(m_bloom_filter_mutex) GUARDED_BY(m_bloom_filter_mutex){nullptr};
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        mutable RecursiveMutex m_tx_inventory_mutex;
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        /** A filter of all the (w)txids that the peer has announced to
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         *  us or we have announced to the peer. We use this to avoid announcing
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         *  the same (w)txid to a peer that already has the transaction. */
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        CRollingBloomFilter m_tx_inventory_known_filter GUARDED_BY(m_tx_inventory_mutex){50000, 0.000001};
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        /** Set of wtxids we still have to announce. For non-wtxid-relay peers,
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         *  we retrieve the txid from the corresponding mempool transaction when
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         *  constructing the `inv` message. We use the mempool to sort transactions
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         *  in dependency order before relay, so this does not have to be sorted. */
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        std::set<Wtxid> m_tx_inventory_to_send GUARDED_BY(m_tx_inventory_mutex);
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        /** Whether the peer has requested us to send our complete mempool. Only
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         *  permitted if the peer has NetPermissionFlags::Mempool or we advertise
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         *  NODE_BLOOM. See BIP35. */
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        bool m_send_mempool GUARDED_BY(m_tx_inventory_mutex){false};
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        /** The next time after which we will send an `inv` message containing
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         *  transaction announcements to this peer. */
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        std::chrono::microseconds m_next_inv_send_time GUARDED_BY(m_tx_inventory_mutex){0};
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        /** The mempool sequence num at which we sent the last `inv` message to this peer.
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         *  Can relay txs with lower sequence numbers than this (see CTxMempool::info_for_relay). */
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        uint64_t m_last_inv_sequence GUARDED_BY(m_tx_inventory_mutex){1};
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        /** Minimum fee rate with which to filter transaction announcements to this node. See BIP133. */
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        std::atomic<CAmount> m_fee_filter_received{0};
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    };
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    /* Initializes a TxRelay struct for this peer. Can be called at most once for a peer. */
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    TxRelay* SetTxRelay() EXCLUSIVE_LOCKS_REQUIRED(!m_tx_relay_mutex)
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0
    {
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        LOCK(m_tx_relay_mutex);
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#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
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#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
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#define PASTE2(x, y) PASTE(x, y)
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#define PASTE(x, y) x ## y
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0
        Assume(!m_tx_relay);
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#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
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0
        m_tx_relay = std::make_unique<Peer::TxRelay>();
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0
        return m_tx_relay.get();
331
0
    };
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333
    TxRelay* GetTxRelay() EXCLUSIVE_LOCKS_REQUIRED(!m_tx_relay_mutex)
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0
    {
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0
        return WITH_LOCK(m_tx_relay_mutex, return m_tx_relay.get());
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0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
336
0
    };
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338
    /** A vector of addresses to send to the peer, limited to MAX_ADDR_TO_SEND. */
339
    std::vector<CAddress> m_addrs_to_send GUARDED_BY(NetEventsInterface::g_msgproc_mutex);
340
    /** Probabilistic filter to track recent addr messages relayed with this
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     *  peer. Used to avoid relaying redundant addresses to this peer.
342
     *
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     *  We initialize this filter for outbound peers (other than
344
     *  block-relay-only connections) or when an inbound peer sends us an
345
     *  address related message (ADDR, ADDRV2, GETADDR).
346
     *
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     *  Presence of this filter must correlate with m_addr_relay_enabled.
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     **/
349
    std::unique_ptr<CRollingBloomFilter> m_addr_known GUARDED_BY(NetEventsInterface::g_msgproc_mutex);
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    /** Whether we are participating in address relay with this connection.
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     *
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     *  We set this bool to true for outbound peers (other than
353
     *  block-relay-only connections), or when an inbound peer sends us an
354
     *  address related message (ADDR, ADDRV2, GETADDR).
355
     *
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     *  We use this bool to decide whether a peer is eligible for gossiping
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     *  addr messages. This avoids relaying to peers that are unlikely to
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     *  forward them, effectively blackholing self announcements. Reasons
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     *  peers might support addr relay on the link include that they connected
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     *  to us as a block-relay-only peer or they are a light client.
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     *
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     *  This field must correlate with whether m_addr_known has been
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     *  initialized.*/
364
    std::atomic_bool m_addr_relay_enabled{false};
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    /** Whether a getaddr request to this peer is outstanding. */
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    bool m_getaddr_sent GUARDED_BY(NetEventsInterface::g_msgproc_mutex){false};
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    /** Guards address sending timers. */
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    mutable Mutex m_addr_send_times_mutex;
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    /** Time point to send the next ADDR message to this peer. */
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    std::chrono::microseconds m_next_addr_send GUARDED_BY(m_addr_send_times_mutex){0};
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    /** Time point to possibly re-announce our local address to this peer. */
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    std::chrono::microseconds m_next_local_addr_send GUARDED_BY(m_addr_send_times_mutex){0};
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    /** Whether the peer has signaled support for receiving ADDRv2 (BIP155)
374
     *  messages, indicating a preference to receive ADDRv2 instead of ADDR ones. */
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    std::atomic_bool m_wants_addrv2{false};
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    /** Whether this peer has already sent us a getaddr message. */
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    bool m_getaddr_recvd GUARDED_BY(NetEventsInterface::g_msgproc_mutex){false};
378
    /** Number of addresses that can be processed from this peer. Start at 1 to
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     *  permit self-announcement. */
380
    double m_addr_token_bucket GUARDED_BY(NetEventsInterface::g_msgproc_mutex){1.0};
381
    /** When m_addr_token_bucket was last updated */
382
    NodeClock::time_point m_addr_token_timestamp GUARDED_BY(NetEventsInterface::g_msgproc_mutex){NodeClock::now()};
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    /** Total number of addresses that were dropped due to rate limiting. */
384
    std::atomic<uint64_t> m_addr_rate_limited{0};
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    /** Total number of addresses that were processed (excludes rate-limited ones). */
386
    std::atomic<uint64_t> m_addr_processed{0};
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    /** Whether we've sent this peer a getheaders in response to an inv prior to initial-headers-sync completing */
389
    bool m_inv_triggered_getheaders_before_sync GUARDED_BY(NetEventsInterface::g_msgproc_mutex){false};
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    /** Protects m_getdata_requests **/
392
    Mutex m_getdata_requests_mutex;
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    /** Work queue of items requested by this peer **/
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    std::deque<CInv> m_getdata_requests GUARDED_BY(m_getdata_requests_mutex);
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    /** Time of the last getheaders message to this peer */
397
    NodeClock::time_point m_last_getheaders_timestamp GUARDED_BY(NetEventsInterface::g_msgproc_mutex){};
398
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    /** Protects m_headers_sync **/
400
    Mutex m_headers_sync_mutex;
401
    /** Headers-sync state for this peer (eg for initial sync, or syncing large
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     * reorgs) **/
403
    std::unique_ptr<HeadersSyncState> m_headers_sync PT_GUARDED_BY(m_headers_sync_mutex) GUARDED_BY(m_headers_sync_mutex) {};
404
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    /** Whether we've sent our peer a sendheaders message. **/
406
    std::atomic<bool> m_sent_sendheaders{false};
407
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    /** When to potentially disconnect peer for stalling headers download */
409
    std::chrono::microseconds m_headers_sync_timeout GUARDED_BY(NetEventsInterface::g_msgproc_mutex){0us};
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    /** Whether this peer wants invs or headers (when possible) for block announcements */
412
    bool m_prefers_headers GUARDED_BY(NetEventsInterface::g_msgproc_mutex){false};
413
414
    /** Time offset computed during the version handshake based on the
415
     * timestamp the peer sent in the version message. */
416
    std::atomic<std::chrono::seconds> m_time_offset{0s};
417
418
    explicit Peer(NodeId id, ServiceFlags our_services, bool is_inbound)
419
0
        : m_id{id}
420
0
        , m_our_services{our_services}
421
0
        , m_is_inbound{is_inbound}
422
0
    {}
423
424
private:
425
    mutable Mutex m_tx_relay_mutex;
426
427
    /** Transaction relay data. May be a nullptr. */
428
    std::unique_ptr<TxRelay> m_tx_relay GUARDED_BY(m_tx_relay_mutex);
429
};
430
431
using PeerRef = std::shared_ptr<Peer>;
432
433
/**
434
 * Maintain validation-specific state about nodes, protected by cs_main, instead
435
 * by CNode's own locks. This simplifies asynchronous operation, where
436
 * processing of incoming data is done after the ProcessMessage call returns,
437
 * and we're no longer holding the node's locks.
438
 */
439
struct CNodeState {
440
    //! The best known block we know this peer has announced.
441
    const CBlockIndex* pindexBestKnownBlock{nullptr};
442
    //! The hash of the last unknown block this peer has announced.
443
    uint256 hashLastUnknownBlock{};
444
    //! The last full block we both have.
445
    const CBlockIndex* pindexLastCommonBlock{nullptr};
446
    //! The best header we have sent our peer.
447
    const CBlockIndex* pindexBestHeaderSent{nullptr};
448
    //! Whether we've started headers synchronization with this peer.
449
    bool fSyncStarted{false};
450
    //! Since when we're stalling block download progress (in microseconds), or 0.
451
    std::chrono::microseconds m_stalling_since{0us};
452
    std::list<QueuedBlock> vBlocksInFlight;
453
    //! When the first entry in vBlocksInFlight started downloading. Don't care when vBlocksInFlight is empty.
454
    std::chrono::microseconds m_downloading_since{0us};
455
    //! Whether we consider this a preferred download peer.
456
    bool fPreferredDownload{false};
457
    /** Whether this peer wants invs or cmpctblocks (when possible) for block announcements. */
458
    bool m_requested_hb_cmpctblocks{false};
459
    /** Whether this peer will send us cmpctblocks if we request them. */
460
    bool m_provides_cmpctblocks{false};
461
462
    /** State used to enforce CHAIN_SYNC_TIMEOUT and EXTRA_PEER_CHECK_INTERVAL logic.
463
      *
464
      * Both are only in effect for outbound, non-manual, non-protected connections.
465
      * Any peer protected (m_protect = true) is not chosen for eviction. A peer is
466
      * marked as protected if all of these are true:
467
      *   - its connection type is IsBlockOnlyConn() == false
468
      *   - it gave us a valid connecting header
469
      *   - we haven't reached MAX_OUTBOUND_PEERS_TO_PROTECT_FROM_DISCONNECT yet
470
      *   - its chain tip has at least as much work as ours
471
      *
472
      * CHAIN_SYNC_TIMEOUT: if a peer's best known block has less work than our tip,
473
      * set a timeout CHAIN_SYNC_TIMEOUT in the future:
474
      *   - If at timeout their best known block now has more work than our tip
475
      *     when the timeout was set, then either reset the timeout or clear it
476
      *     (after comparing against our current tip's work)
477
      *   - If at timeout their best known block still has less work than our
478
      *     tip did when the timeout was set, then send a getheaders message,
479
      *     and set a shorter timeout, HEADERS_RESPONSE_TIME seconds in future.
480
      *     If their best known block is still behind when that new timeout is
481
      *     reached, disconnect.
482
      *
483
      * EXTRA_PEER_CHECK_INTERVAL: after each interval, if we have too many outbound peers,
484
      * drop the outbound one that least recently announced us a new block.
485
      */
486
    struct ChainSyncTimeoutState {
487
        //! A timeout used for checking whether our peer has sufficiently synced
488
        std::chrono::seconds m_timeout{0s};
489
        //! A header with the work we require on our peer's chain
490
        const CBlockIndex* m_work_header{nullptr};
491
        //! After timeout is reached, set to true after sending getheaders
492
        bool m_sent_getheaders{false};
493
        //! Whether this peer is protected from disconnection due to a bad/slow chain
494
        bool m_protect{false};
495
    };
496
497
    ChainSyncTimeoutState m_chain_sync;
498
499
    //! Time of last new block announcement
500
    int64_t m_last_block_announcement{0};
501
};
502
503
class PeerManagerImpl final : public PeerManager
504
{
505
public:
506
    PeerManagerImpl(CConnman& connman, AddrMan& addrman,
507
                    BanMan* banman, ChainstateManager& chainman,
508
                    CTxMemPool& pool, node::Warnings& warnings, Options opts);
509
510
    /** Overridden from CValidationInterface. */
511
    void ActiveTipChange(const CBlockIndex& new_tip, bool) override
512
        EXCLUSIVE_LOCKS_REQUIRED(!m_tx_download_mutex);
513
    void BlockConnected(const ChainstateRole& role, const std::shared_ptr<const CBlock>& pblock, const CBlockIndex* pindexConnected) override
514
        EXCLUSIVE_LOCKS_REQUIRED(!m_tx_download_mutex);
515
    void BlockDisconnected(const std::shared_ptr<const CBlock> &block, const CBlockIndex* pindex) override
516
        EXCLUSIVE_LOCKS_REQUIRED(!m_tx_download_mutex);
517
    void UpdatedBlockTip(const CBlockIndex *pindexNew, const CBlockIndex *pindexFork, bool fInitialDownload) override
518
        EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
519
    void BlockChecked(const std::shared_ptr<const CBlock>& block, const BlockValidationState& state) override
520
        EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
521
    void NewPoWValidBlock(const CBlockIndex *pindex, const std::shared_ptr<const CBlock>& pblock) override
522
        EXCLUSIVE_LOCKS_REQUIRED(!m_most_recent_block_mutex);
523
524
    /** Implement NetEventsInterface */
525
    void InitializeNode(const CNode& node, ServiceFlags our_services) override EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex, !m_tx_download_mutex);
526
    void FinalizeNode(const CNode& node) override EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex, !m_headers_presync_mutex, !m_tx_download_mutex);
527
    bool HasAllDesirableServiceFlags(ServiceFlags services) const override;
528
    bool ProcessMessages(CNode& node, std::atomic<bool>& interrupt) override
529
        EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex, !m_most_recent_block_mutex, !m_headers_presync_mutex, g_msgproc_mutex, !m_tx_download_mutex);
530
    bool SendMessages(CNode& node) override
531
        EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex, !m_most_recent_block_mutex, g_msgproc_mutex, !m_tx_download_mutex);
532
533
    /** Implement PeerManager */
534
    void StartScheduledTasks(CScheduler& scheduler) override;
535
    void CheckForStaleTipAndEvictPeers() override;
536
    util::Expected<void, std::string> FetchBlock(NodeId peer_id, const CBlockIndex& block_index) override
537
        EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
538
    bool GetNodeStateStats(NodeId nodeid, CNodeStateStats& stats) const override EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
539
    std::vector<node::TxOrphanage::OrphanInfo> GetOrphanTransactions() override EXCLUSIVE_LOCKS_REQUIRED(!m_tx_download_mutex);
540
    PeerManagerInfo GetInfo() const override EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
541
    std::vector<PrivateBroadcast::TxBroadcastInfo> GetPrivateBroadcastInfo() const override EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
542
    std::vector<CTransactionRef> AbortPrivateBroadcast(const uint256& id) override EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
543
    void SendPings() override EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
544
    void InitiateTxBroadcastToAll(const Txid& txid, const Wtxid& wtxid) override EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
545
    void InitiateTxBroadcastPrivate(const CTransactionRef& tx) override EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
546
    void SetBestBlock(int height, std::chrono::seconds time) override
547
0
    {
548
0
        m_best_height = height;
549
0
        m_best_block_time = time;
550
0
    };
551
0
    void UnitTestMisbehaving(NodeId peer_id) override EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex) { Misbehaving(*Assert(GetPeerRef(peer_id)), ""); };
Line
Count
Source
113
0
#define Assert(val) inline_assertion_check<true>(val, std::source_location::current(), #val)
552
    void UpdateLastBlockAnnounceTime(NodeId node, int64_t time_in_seconds) override;
553
    ServiceFlags GetDesirableServiceFlags(ServiceFlags services) const override;
554
555
private:
556
    void ProcessMessage(Peer& peer, CNode& pfrom, const std::string& msg_type, DataStream& vRecv, std::chrono::microseconds time_received,
557
                        const std::atomic<bool>& interruptMsgProc)
558
        EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex, !m_most_recent_block_mutex, !m_headers_presync_mutex, g_msgproc_mutex, !m_tx_download_mutex);
559
560
    /** Consider evicting an outbound peer based on the amount of time they've been behind our tip */
561
    void ConsiderEviction(CNode& pto, Peer& peer, std::chrono::seconds time_in_seconds) EXCLUSIVE_LOCKS_REQUIRED(cs_main, g_msgproc_mutex);
562
563
    /** If we have extra outbound peers, try to disconnect the one with the oldest block announcement */
564
    void EvictExtraOutboundPeers(std::chrono::seconds now) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
565
566
    /** Retrieve unbroadcast transactions from the mempool and reattempt sending to peers */
567
    void ReattemptInitialBroadcast(CScheduler& scheduler) EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
568
569
    /** Rebroadcast stale private transactions (already broadcast but not received back from the network). */
570
    void ReattemptPrivateBroadcast(CScheduler& scheduler);
571
572
    /** Get a shared pointer to the Peer object.
573
     *  May return an empty shared_ptr if the Peer object can't be found. */
574
    PeerRef GetPeerRef(NodeId id) const EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
575
576
    /** Get a shared pointer to the Peer object and remove it from m_peer_map.
577
     *  May return an empty shared_ptr if the Peer object can't be found. */
578
    PeerRef RemovePeer(NodeId id) EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
579
580
    /** Mark a peer as misbehaving, which will cause it to be disconnected and its
581
     *  address discouraged. */
582
    void Misbehaving(Peer& peer, const std::string& message);
583
584
    /**
585
     * Potentially mark a node discouraged based on the contents of a BlockValidationState object
586
     *
587
     * @param[in] via_compact_block this bool is passed in because net_processing should
588
     * punish peers differently depending on whether the data was provided in a compact
589
     * block message or not. If the compact block had a valid header, but contained invalid
590
     * txs, the peer should not be punished. See BIP 152.
591
     */
592
    void MaybePunishNodeForBlock(NodeId nodeid, const BlockValidationState& state,
593
                                 bool via_compact_block, const std::string& message = "")
594
        EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex);
595
596
    /** Maybe disconnect a peer and discourage future connections from its address.
597
     *
598
     * @param[in]   pnode     The node to check.
599
     * @param[in]   peer      The peer object to check.
600
     * @return                True if the peer was marked for disconnection in this function
601
     */
602
    bool MaybeDiscourageAndDisconnect(CNode& pnode, Peer& peer);
603
604
    /** Handle a transaction whose result was not MempoolAcceptResult::ResultType::VALID.
605
     * @param[in]   first_time_failure            Whether we should consider inserting into vExtraTxnForCompact, adding
606
     *                                            a new orphan to resolve, or looking for a package to submit.
607
     *                                            Set to true for transactions just received over p2p.
608
     *                                            Set to false if the tx has already been rejected before,
609
     *                                            e.g. is already in the orphanage, to avoid adding duplicate entries.
610
     * Updates m_txrequest, m_lazy_recent_rejects, m_lazy_recent_rejects_reconsiderable, m_orphanage, and vExtraTxnForCompact.
611
     *
612
     * @returns a PackageToValidate if this transaction has a reconsiderable failure and an eligible package was found,
613
     * or std::nullopt otherwise.
614
     */
615
    std::optional<node::PackageToValidate> ProcessInvalidTx(NodeId nodeid, const CTransactionRef& tx, const TxValidationState& result,
616
                                                      bool first_time_failure)
617
        EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex, g_msgproc_mutex, m_tx_download_mutex);
618
619
    /** Handle a transaction whose result was MempoolAcceptResult::ResultType::VALID.
620
     * Updates m_txrequest, m_orphanage, and vExtraTxnForCompact. Also queues the tx for relay. */
621
    void ProcessValidTx(NodeId nodeid, const CTransactionRef& tx, const std::list<CTransactionRef>& replaced_transactions)
622
        EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex, g_msgproc_mutex, m_tx_download_mutex);
623
624
    /** Handle the results of package validation: calls ProcessValidTx and ProcessInvalidTx for
625
     * individual transactions, and caches rejection for the package as a group.
626
     */
627
    void ProcessPackageResult(const node::PackageToValidate& package_to_validate, const PackageMempoolAcceptResult& package_result)
628
        EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex, g_msgproc_mutex, m_tx_download_mutex);
629
630
    /**
631
     * Reconsider orphan transactions after a parent has been accepted to the mempool.
632
     *
633
     * @peer[in]  peer     The peer whose orphan transactions we will reconsider. Generally only
634
     *                     one orphan will be reconsidered on each call of this function. If an
635
     *                     accepted orphan has orphaned children, those will need to be
636
     *                     reconsidered, creating more work, possibly for other peers.
637
     * @return             True if meaningful work was done (an orphan was accepted/rejected).
638
     *                     If no meaningful work was done, then the work set for this peer
639
     *                     will be empty.
640
     */
641
    bool ProcessOrphanTx(Peer& peer)
642
        EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex, g_msgproc_mutex, !m_tx_download_mutex);
643
644
    /** Process a single headers message from a peer.
645
     *
646
     * @param[in]   pfrom     CNode of the peer
647
     * @param[in]   peer      The peer sending us the headers
648
     * @param[in]   headers   The headers received. Note that this may be modified within ProcessHeadersMessage.
649
     * @param[in]   via_compact_block   Whether this header came in via compact block handling.
650
    */
651
    void ProcessHeadersMessage(CNode& pfrom, Peer& peer,
652
                               std::vector<CBlockHeader>&& headers,
653
                               bool via_compact_block)
654
        EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex, !m_headers_presync_mutex, g_msgproc_mutex);
655
    /** Various helpers for headers processing, invoked by ProcessHeadersMessage() */
656
    /** Return true if headers are continuous and have valid proof-of-work (DoS points assigned on failure) */
657
    bool CheckHeadersPoW(const std::vector<CBlockHeader>& headers, Peer& peer);
658
    /** Calculate an anti-DoS work threshold for headers chains */
659
    arith_uint256 GetAntiDoSWorkThreshold();
660
    /** Deal with state tracking and headers sync for peers that send
661
     * non-connecting headers (this can happen due to BIP 130 headers
662
     * announcements for blocks interacting with the 2hr (MAX_FUTURE_BLOCK_TIME) rule). */
663
    void HandleUnconnectingHeaders(CNode& pfrom, Peer& peer, const std::vector<CBlockHeader>& headers) EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex);
664
    /** Return true if the headers connect to each other, false otherwise */
665
    bool CheckHeadersAreContinuous(const std::vector<CBlockHeader>& headers) const;
666
    /** Try to continue a low-work headers sync that has already begun.
667
     * Assumes the caller has already verified the headers connect, and has
668
     * checked that each header satisfies the proof-of-work target included in
669
     * the header.
670
     *  @param[in]  peer                            The peer we're syncing with.
671
     *  @param[in]  pfrom                           CNode of the peer
672
     *  @param[in,out] headers                      The headers to be processed.
673
     *  @return     True if the passed in headers were successfully processed
674
     *              as the continuation of a low-work headers sync in progress;
675
     *              false otherwise.
676
     *              If false, the passed in headers will be returned back to
677
     *              the caller.
678
     *              If true, the returned headers may be empty, indicating
679
     *              there is no more work for the caller to do; or the headers
680
     *              may be populated with entries that have passed anti-DoS
681
     *              checks (and therefore may be validated for block index
682
     *              acceptance by the caller).
683
     */
684
    bool IsContinuationOfLowWorkHeadersSync(Peer& peer, CNode& pfrom,
685
            std::vector<CBlockHeader>& headers)
686
        EXCLUSIVE_LOCKS_REQUIRED(peer.m_headers_sync_mutex, !m_headers_presync_mutex, g_msgproc_mutex);
687
    /** Check work on a headers chain to be processed, and if insufficient,
688
     * initiate our anti-DoS headers sync mechanism.
689
     *
690
     * @param[in]   peer                The peer whose headers we're processing.
691
     * @param[in]   pfrom               CNode of the peer
692
     * @param[in]   chain_start_header  Where these headers connect in our index.
693
     * @param[in,out]   headers             The headers to be processed.
694
     *
695
     * @return      True if chain was low work (headers will be empty after
696
     *              calling); false otherwise.
697
     */
698
    bool TryLowWorkHeadersSync(Peer& peer, CNode& pfrom,
699
                               const CBlockIndex& chain_start_header,
700
                               std::vector<CBlockHeader>& headers)
701
        EXCLUSIVE_LOCKS_REQUIRED(!peer.m_headers_sync_mutex, !m_peer_mutex, !m_headers_presync_mutex, g_msgproc_mutex);
702
703
    /** Return true if the given header is an ancestor of
704
     *  m_chainman.m_best_header or our current tip */
705
    bool IsAncestorOfBestHeaderOrTip(const CBlockIndex* header) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
706
707
    /** Request further headers from this peer with a given locator.
708
     * We don't issue a getheaders message if we have a recent one outstanding.
709
     * This returns true if a getheaders is actually sent, and false otherwise.
710
     */
711
    bool MaybeSendGetHeaders(CNode& pfrom, const CBlockLocator& locator, Peer& peer) EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex);
712
    /** Potentially fetch blocks from this peer upon receipt of a new headers tip */
713
    void HeadersDirectFetchBlocks(CNode& pfrom, const Peer& peer, const CBlockIndex& last_header);
714
    /** Update peer state based on received headers message */
715
    void UpdatePeerStateForReceivedHeaders(CNode& pfrom, Peer& peer, const CBlockIndex& last_header, bool received_new_header, bool may_have_more_headers)
716
        EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex);
717
718
    void SendBlockTransactions(CNode& pfrom, Peer& peer, const CBlock& block, const BlockTransactionsRequest& req);
719
720
    /** Send a message to a peer */
721
0
    void PushMessage(CNode& node, CSerializedNetMsg&& msg) const { m_connman.PushMessage(&node, std::move(msg)); }
722
    template <typename... Args>
723
    void MakeAndPushMessage(CNode& node, std::string msg_type, Args&&... args) const
724
0
    {
725
0
        m_connman.PushMessage(&node, NetMsg::Make(std::move(msg_type), std::forward<Args>(args)...));
726
0
    }
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<bool, unsigned long const&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool&&, unsigned long const&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<std::vector<CInv, std::allocator<CInv> >&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::vector<CInv, std::allocator<CInv> >&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<ParamsWrapper<TransactionSerParams, CTransaction const> >(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, ParamsWrapper<TransactionSerParams, CTransaction const>&&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<std::span<std::byte const, 18446744073709551615ul> >(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::span<std::byte const, 18446744073709551615ul>&&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<ParamsWrapper<TransactionSerParams, CBlock const> >(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, ParamsWrapper<TransactionSerParams, CBlock const>&&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<CMerkleBlock&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, CMerkleBlock&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<CBlockHeaderAndShortTxIDs const&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, CBlockHeaderAndShortTxIDs const&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<CBlockHeaderAndShortTxIDs&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, CBlockHeaderAndShortTxIDs&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<int const&, unsigned long&, long&, unsigned long&, ParamsWrapper<CNetAddr::SerParams, CService>, unsigned long&, ParamsWrapper<CNetAddr::SerParams, CService>, unsigned long, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&, int&, bool&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, int const&, unsigned long&, long&, unsigned long&, ParamsWrapper<CNetAddr::SerParams, CService>&&, unsigned long&, ParamsWrapper<CNetAddr::SerParams, CService>&&, unsigned long&&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&, int&, bool&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<unsigned int const&, unsigned long const&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, unsigned int const&, unsigned long const&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<std::array<std::byte, 168ul> const&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::array<std::byte, 168ul> const&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<std::vector<CInv, std::allocator<CInv> > >(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::vector<CInv, std::allocator<CInv> >&&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<CBlockLocator const&, uint256>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, CBlockLocator const&, uint256&&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<BlockTransactions&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, BlockTransactions&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<std::vector<CBlockHeader, std::allocator<CBlockHeader> > >(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::vector<CBlockHeader, std::allocator<CBlockHeader> >&&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<ParamsWrapper<TransactionSerParams, std::vector<CBlock, std::allocator<CBlock> > > >(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, ParamsWrapper<TransactionSerParams, std::vector<CBlock, std::allocator<CBlock> > >&&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<BlockTransactionsRequest&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, BlockTransactionsRequest&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<unsigned long&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, unsigned long&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<BlockFilter const&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, BlockFilter const&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<unsigned char&, uint256, uint256&, std::vector<uint256, std::allocator<uint256> >&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, unsigned char&, uint256&&, uint256&, std::vector<uint256, std::allocator<uint256> >&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<unsigned char&, uint256, std::vector<uint256, std::allocator<uint256> >&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, unsigned char&, uint256&&, std::vector<uint256, std::allocator<uint256> >&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<ParamsWrapper<CAddress::SerParams, std::vector<CAddress, std::allocator<CAddress> > > >(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, ParamsWrapper<CAddress::SerParams, std::vector<CAddress, std::allocator<CAddress> > >&&) const
Unexecuted instantiation: net_processing.cpp:void (anonymous namespace)::PeerManagerImpl::MakeAndPushMessage<long&>(CNode&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, long&) const
727
728
    /** Send a version message to a peer */
729
    void PushNodeVersion(CNode& pnode, const Peer& peer);
730
731
    /** Send a ping message every PING_INTERVAL or if requested via RPC (peer.m_ping_queued is true).
732
     *  May mark the peer to be disconnected if a ping has timed out.
733
     *  We use mockable time for ping timeouts, so setmocktime may cause pings
734
     *  to time out. */
735
    void MaybeSendPing(CNode& node_to, Peer& peer, std::chrono::microseconds now);
736
737
    /** Send `addr` messages on a regular schedule. */
738
    void MaybeSendAddr(CNode& node, Peer& peer, std::chrono::microseconds current_time) EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex);
739
740
    /** Send a single `sendheaders` message, after we have completed headers sync with a peer. */
741
    void MaybeSendSendHeaders(CNode& node, Peer& peer) EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex);
742
743
    /** Relay (gossip) an address to a few randomly chosen nodes.
744
     *
745
     * @param[in] originator   The id of the peer that sent us the address. We don't want to relay it back.
746
     * @param[in] addr         Address to relay.
747
     * @param[in] fReachable   Whether the address' network is reachable. We relay unreachable
748
     *                         addresses less.
749
     */
750
    void RelayAddress(NodeId originator, const CAddress& addr, bool fReachable) EXCLUSIVE_LOCKS_REQUIRED(!m_peer_mutex, g_msgproc_mutex);
751
752
    /** Send `feefilter` message. */
753
    void MaybeSendFeefilter(CNode& node, Peer& peer, std::chrono::microseconds current_time) EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex);
754
755
    FastRandomContext m_rng GUARDED_BY(NetEventsInterface::g_msgproc_mutex);
756
757
    FeeFilterRounder m_fee_filter_rounder GUARDED_BY(NetEventsInterface::g_msgproc_mutex);
758
759
    const CChainParams& m_chainparams;
760
    CConnman& m_connman;
761
    AddrMan& m_addrman;
762
    /** Pointer to this node's banman. May be nullptr - check existence before dereferencing. */
763
    BanMan* const m_banman;
764
    ChainstateManager& m_chainman;
765
    CTxMemPool& m_mempool;
766
767
    /** Synchronizes tx download including TxRequestTracker, rejection filters, and TxOrphanage.
768
     * Lock invariants:
769
     * - A txhash (txid or wtxid) in m_txrequest is not also in m_orphanage.
770
     * - A txhash (txid or wtxid) in m_txrequest is not also in m_lazy_recent_rejects.
771
     * - A txhash (txid or wtxid) in m_txrequest is not also in m_lazy_recent_rejects_reconsiderable.
772
     * - A txhash (txid or wtxid) in m_txrequest is not also in m_lazy_recent_confirmed_transactions.
773
     * - Each data structure's limits hold (m_orphanage max size, m_txrequest per-peer limits, etc).
774
     */
775
    Mutex m_tx_download_mutex ACQUIRED_BEFORE(m_mempool.cs);
776
    node::TxDownloadManager m_txdownloadman GUARDED_BY(m_tx_download_mutex);
777
778
    std::unique_ptr<TxReconciliationTracker> m_txreconciliation;
779
780
    /** The height of the best chain */
781
    std::atomic<int> m_best_height{-1};
782
    /** The time of the best chain tip block */
783
    std::atomic<std::chrono::seconds> m_best_block_time{0s};
784
785
    /** Next time to check for stale tip */
786
    std::chrono::seconds m_stale_tip_check_time GUARDED_BY(cs_main){0s};
787
788
    node::Warnings& m_warnings;
789
    TimeOffsets m_outbound_time_offsets{m_warnings};
790
791
    const Options m_opts;
792
793
    bool RejectIncomingTxs(const CNode& peer) const;
794
795
    /** Whether we've completed initial sync yet, for determining when to turn
796
      * on extra block-relay-only peers. */
797
    bool m_initial_sync_finished GUARDED_BY(cs_main){false};
798
799
    /** Protects m_peer_map. This mutex must not be locked while holding a lock
800
     *  on any of the mutexes inside a Peer object. */
801
    mutable Mutex m_peer_mutex;
802
    /**
803
     * Map of all Peer objects, keyed by peer id. This map is protected
804
     * by the m_peer_mutex. Once a shared pointer reference is
805
     * taken, the lock may be released. Individual fields are protected by
806
     * their own locks.
807
     */
808
    std::map<NodeId, PeerRef> m_peer_map GUARDED_BY(m_peer_mutex);
809
810
    /** Map maintaining per-node state. */
811
    std::map<NodeId, CNodeState> m_node_states GUARDED_BY(cs_main);
812
813
    /** Get a pointer to a const CNodeState, used when not mutating the CNodeState object. */
814
    const CNodeState* State(NodeId pnode) const EXCLUSIVE_LOCKS_REQUIRED(cs_main);
815
    /** Get a pointer to a mutable CNodeState. */
816
    CNodeState* State(NodeId pnode) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
817
818
    uint32_t GetFetchFlags(const Peer& peer) const;
819
820
    std::map<uint64_t, std::chrono::microseconds> m_next_inv_to_inbounds_per_network_key GUARDED_BY(g_msgproc_mutex);
821
822
    /** Number of nodes with fSyncStarted. */
823
    int nSyncStarted GUARDED_BY(cs_main) = 0;
824
825
    /** Hash of the last block we received via INV */
826
    uint256 m_last_block_inv_triggering_headers_sync GUARDED_BY(g_msgproc_mutex){};
827
828
    /**
829
     * Sources of received blocks, saved to be able punish them when processing
830
     * happens afterwards.
831
     * Set mapBlockSource[hash].second to false if the node should not be
832
     * punished if the block is invalid.
833
     */
834
    std::map<uint256, std::pair<NodeId, bool>> mapBlockSource GUARDED_BY(cs_main);
835
836
    /** Number of peers with wtxid relay. */
837
    std::atomic<int> m_wtxid_relay_peers{0};
838
839
    /** Number of outbound peers with m_chain_sync.m_protect. */
840
    int m_outbound_peers_with_protect_from_disconnect GUARDED_BY(cs_main) = 0;
841
842
    /** Number of preferable block download peers. */
843
    int m_num_preferred_download_peers GUARDED_BY(cs_main){0};
844
845
    /** Stalling timeout for blocks in IBD */
846
    std::atomic<std::chrono::seconds> m_block_stalling_timeout{BLOCK_STALLING_TIMEOUT_DEFAULT};
847
848
    /**
849
     * For sending `inv`s to inbound peers, we use a single (exponentially
850
     * distributed) timer for all peers with the same network key. If we used a separate timer for each
851
     * peer, a spy node could make multiple inbound connections to us to
852
     * accurately determine when we received a transaction (and potentially
853
     * determine the transaction's origin). Each network key has its own timer
854
     * to make fingerprinting harder. */
855
    std::chrono::microseconds NextInvToInbounds(std::chrono::microseconds now,
856
                                                std::chrono::seconds average_interval,
857
                                                uint64_t network_key) EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex);
858
859
860
    // All of the following cache a recent block, and are protected by m_most_recent_block_mutex
861
    Mutex m_most_recent_block_mutex;
862
    std::shared_ptr<const CBlock> m_most_recent_block GUARDED_BY(m_most_recent_block_mutex);
863
    std::shared_ptr<const CBlockHeaderAndShortTxIDs> m_most_recent_compact_block GUARDED_BY(m_most_recent_block_mutex);
864
    uint256 m_most_recent_block_hash GUARDED_BY(m_most_recent_block_mutex);
865
    std::unique_ptr<const std::map<GenTxid, CTransactionRef>> m_most_recent_block_txs GUARDED_BY(m_most_recent_block_mutex);
866
867
    // Data about the low-work headers synchronization, aggregated from all peers' HeadersSyncStates.
868
    /** Mutex guarding the other m_headers_presync_* variables. */
869
    Mutex m_headers_presync_mutex;
870
    /** A type to represent statistics about a peer's low-work headers sync.
871
     *
872
     * - The first field is the total verified amount of work in that synchronization.
873
     * - The second is:
874
     *   - nullopt: the sync is in REDOWNLOAD phase (phase 2).
875
     *   - {height, timestamp}: the sync has the specified tip height and block timestamp (phase 1).
876
     */
877
    using HeadersPresyncStats = std::pair<arith_uint256, std::optional<std::pair<int64_t, uint32_t>>>;
878
    /** Statistics for all peers in low-work headers sync. */
879
    std::map<NodeId, HeadersPresyncStats> m_headers_presync_stats GUARDED_BY(m_headers_presync_mutex) {};
880
    /** The peer with the most-work entry in m_headers_presync_stats. */
881
    NodeId m_headers_presync_bestpeer GUARDED_BY(m_headers_presync_mutex) {-1};
882
    /** The m_headers_presync_stats improved, and needs signalling. */
883
    std::atomic_bool m_headers_presync_should_signal{false};
884
885
    /** Height of the highest block announced using BIP 152 high-bandwidth mode. */
886
    int m_highest_fast_announce GUARDED_BY(::cs_main){0};
887
888
    /** Have we requested this block from a peer */
889
    bool IsBlockRequested(const uint256& hash) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
890
891
    /** Have we requested this block from an outbound peer */
892
    bool IsBlockRequestedFromOutbound(const uint256& hash) EXCLUSIVE_LOCKS_REQUIRED(cs_main, !m_peer_mutex);
893
894
    /** Remove this block from our tracked requested blocks. Called if:
895
     *  - the block has been received from a peer
896
     *  - the request for the block has timed out
897
     * If "from_peer" is specified, then only remove the block if it is in
898
     * flight from that peer (to avoid one peer's network traffic from
899
     * affecting another's state).
900
     */
901
    void RemoveBlockRequest(const uint256& hash, std::optional<NodeId> from_peer) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
902
903
    /* Mark a block as in flight
904
     * Returns false, still setting pit, if the block was already in flight from the same peer
905
     * pit will only be valid as long as the same cs_main lock is being held
906
     */
907
    bool BlockRequested(NodeId nodeid, const CBlockIndex& block, std::list<QueuedBlock>::iterator** pit = nullptr) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
908
909
    bool TipMayBeStale() EXCLUSIVE_LOCKS_REQUIRED(cs_main);
910
911
    /** Update pindexLastCommonBlock and add not-in-flight missing successors to vBlocks, until it has
912
     *  at most count entries.
913
     */
914
    void FindNextBlocksToDownload(const Peer& peer, unsigned int count, std::vector<const CBlockIndex*>& vBlocks, NodeId& nodeStaller) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
915
916
    /** Request blocks for the background chainstate, if one is in use. */
917
    void TryDownloadingHistoricalBlocks(const Peer& peer, unsigned int count, std::vector<const CBlockIndex*>& vBlocks, const CBlockIndex* from_tip, const CBlockIndex* target_block) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
918
919
    /**
920
    * \brief Find next blocks to download from a peer after a starting block.
921
    *
922
    * \param vBlocks      Vector of blocks to download which will be appended to.
923
    * \param peer         Peer which blocks will be downloaded from.
924
    * \param state        Pointer to the state of the peer.
925
    * \param pindexWalk   Pointer to the starting block to add to vBlocks.
926
    * \param count        Maximum number of blocks to allow in vBlocks. No more
927
    *                     blocks will be added if it reaches this size.
928
    * \param nWindowEnd   Maximum height of blocks to allow in vBlocks. No
929
    *                     blocks will be added above this height.
930
    * \param activeChain  Optional pointer to a chain to compare against. If
931
    *                     provided, any next blocks which are already contained
932
    *                     in this chain will not be appended to vBlocks, but
933
    *                     instead will be used to update the
934
    *                     state->pindexLastCommonBlock pointer.
935
    * \param nodeStaller  Optional pointer to a NodeId variable that will receive
936
    *                     the ID of another peer that might be causing this peer
937
    *                     to stall. This is set to the ID of the peer which
938
    *                     first requested the first in-flight block in the
939
    *                     download window. It is only set if vBlocks is empty at
940
    *                     the end of this function call and if increasing
941
    *                     nWindowEnd by 1 would cause it to be non-empty (which
942
    *                     indicates the download might be stalled because every
943
    *                     block in the window is in flight and no other peer is
944
    *                     trying to download the next block).
945
    */
946
    void FindNextBlocks(std::vector<const CBlockIndex*>& vBlocks, const Peer& peer, CNodeState *state, const CBlockIndex *pindexWalk, unsigned int count, int nWindowEnd, const CChain* activeChain=nullptr, NodeId* nodeStaller=nullptr) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
947
948
    /* Multimap used to preserve insertion order */
949
    typedef std::multimap<uint256, std::pair<NodeId, std::list<QueuedBlock>::iterator>> BlockDownloadMap;
950
    BlockDownloadMap mapBlocksInFlight GUARDED_BY(cs_main);
951
952
    /** When our tip was last updated. */
953
    std::atomic<std::chrono::seconds> m_last_tip_update{0s};
954
955
    /** Determine whether or not a peer can request a transaction, and return it (or nullptr if not found or not allowed). */
956
    CTransactionRef FindTxForGetData(const Peer::TxRelay& tx_relay, const GenTxid& gtxid)
957
        EXCLUSIVE_LOCKS_REQUIRED(!m_most_recent_block_mutex, !tx_relay.m_tx_inventory_mutex);
958
959
    void ProcessGetData(CNode& pfrom, Peer& peer, const std::atomic<bool>& interruptMsgProc)
960
        EXCLUSIVE_LOCKS_REQUIRED(!m_most_recent_block_mutex, peer.m_getdata_requests_mutex, NetEventsInterface::g_msgproc_mutex)
961
        LOCKS_EXCLUDED(::cs_main);
962
963
    /** Process a new block. Perform any post-processing housekeeping */
964
    void ProcessBlock(CNode& node, const std::shared_ptr<const CBlock>& block, bool force_processing, bool min_pow_checked);
965
966
    /** Process compact block txns  */
967
    void ProcessCompactBlockTxns(CNode& pfrom, Peer& peer, const BlockTransactions& block_transactions)
968
        EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex, !m_most_recent_block_mutex);
969
970
    /**
971
     * Schedule an INV for a transaction to be sent to the given peer (via `PushMessage()`).
972
     * The transaction is picked from the list of transactions for private broadcast.
973
     * It is assumed that the connection to the peer is `ConnectionType::PRIVATE_BROADCAST`.
974
     * Avoid calling this for other peers since it will degrade privacy.
975
     */
976
    void PushPrivateBroadcastTx(CNode& node) EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex, !m_most_recent_block_mutex);
977
978
    /**
979
     * When a peer sends us a valid block, instruct it to announce blocks to us
980
     * using CMPCTBLOCK if possible by adding its nodeid to the end of
981
     * lNodesAnnouncingHeaderAndIDs, and keeping that list under a certain size by
982
     * removing the first element if necessary.
983
     */
984
    void MaybeSetPeerAsAnnouncingHeaderAndIDs(NodeId nodeid) EXCLUSIVE_LOCKS_REQUIRED(cs_main, !m_peer_mutex);
985
986
    /** Stack of nodes which we have set to announce using compact blocks */
987
    std::list<NodeId> lNodesAnnouncingHeaderAndIDs GUARDED_BY(cs_main);
988
989
    /** Number of peers from which we're downloading blocks. */
990
    int m_peers_downloading_from GUARDED_BY(cs_main) = 0;
991
992
    void AddToCompactExtraTransactions(const CTransactionRef& tx) EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex);
993
994
    /** Orphan/conflicted/etc transactions that are kept for compact block reconstruction.
995
     *  The last -blockreconstructionextratxn/DEFAULT_BLOCK_RECONSTRUCTION_EXTRA_TXN of
996
     *  these are kept in a ring buffer */
997
    std::vector<std::pair<Wtxid, CTransactionRef>> vExtraTxnForCompact GUARDED_BY(g_msgproc_mutex);
998
    /** Offset into vExtraTxnForCompact to insert the next tx */
999
    size_t vExtraTxnForCompactIt GUARDED_BY(g_msgproc_mutex) = 0;
1000
1001
    /** Check whether the last unknown block a peer advertised is not yet known. */
1002
    void ProcessBlockAvailability(NodeId nodeid) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
1003
    /** Update tracking information about which blocks a peer is assumed to have. */
1004
    void UpdateBlockAvailability(NodeId nodeid, const uint256& hash) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
1005
    bool CanDirectFetch() EXCLUSIVE_LOCKS_REQUIRED(cs_main);
1006
1007
    /**
1008
     * Estimates the distance, in blocks, between the best-known block and the network chain tip.
1009
     * Utilizes the best-block time and the chainparams blocks spacing to approximate it.
1010
     */
1011
    int64_t ApproximateBestBlockDepth() const;
1012
1013
    /**
1014
     * To prevent fingerprinting attacks, only send blocks/headers outside of
1015
     * the active chain if they are no more than a month older (both in time,
1016
     * and in best equivalent proof of work) than the best header chain we know
1017
     * about and we fully-validated them at some point.
1018
     */
1019
    bool BlockRequestAllowed(const CBlockIndex& block_index) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
1020
    bool AlreadyHaveBlock(const uint256& block_hash) EXCLUSIVE_LOCKS_REQUIRED(cs_main);
1021
    void ProcessGetBlockData(CNode& pfrom, Peer& peer, const CInv& inv)
1022
        EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex, !m_most_recent_block_mutex);
1023
1024
    /**
1025
     * Validation logic for compact filters request handling.
1026
     *
1027
     * May disconnect from the peer in the case of a bad request.
1028
     *
1029
     * @param[in]   node            The node that we received the request from
1030
     * @param[in]   peer            The peer that we received the request from
1031
     * @param[in]   filter_type     The filter type the request is for. Must be basic filters.
1032
     * @param[in]   start_height    The start height for the request
1033
     * @param[in]   stop_hash       The stop_hash for the request
1034
     * @param[in]   max_height_diff The maximum number of items permitted to request, as specified in BIP 157
1035
     * @param[out]  stop_index      The CBlockIndex for the stop_hash block, if the request can be serviced.
1036
     * @param[out]  filter_index    The filter index, if the request can be serviced.
1037
     * @return                      True if the request can be serviced.
1038
     */
1039
    bool PrepareBlockFilterRequest(CNode& node, Peer& peer,
1040
                                   BlockFilterType filter_type, uint32_t start_height,
1041
                                   const uint256& stop_hash, uint32_t max_height_diff,
1042
                                   const CBlockIndex*& stop_index,
1043
                                   BlockFilterIndex*& filter_index);
1044
1045
    /**
1046
     * Handle a cfilters request.
1047
     *
1048
     * May disconnect from the peer in the case of a bad request.
1049
     *
1050
     * @param[in]   node            The node that we received the request from
1051
     * @param[in]   peer            The peer that we received the request from
1052
     * @param[in]   vRecv           The raw message received
1053
     */
1054
    void ProcessGetCFilters(CNode& node, Peer& peer, DataStream& vRecv);
1055
1056
    /**
1057
     * Handle a cfheaders request.
1058
     *
1059
     * May disconnect from the peer in the case of a bad request.
1060
     *
1061
     * @param[in]   node            The node that we received the request from
1062
     * @param[in]   peer            The peer that we received the request from
1063
     * @param[in]   vRecv           The raw message received
1064
     */
1065
    void ProcessGetCFHeaders(CNode& node, Peer& peer, DataStream& vRecv);
1066
1067
    /**
1068
     * Handle a getcfcheckpt request.
1069
     *
1070
     * May disconnect from the peer in the case of a bad request.
1071
     *
1072
     * @param[in]   node            The node that we received the request from
1073
     * @param[in]   peer            The peer that we received the request from
1074
     * @param[in]   vRecv           The raw message received
1075
     */
1076
    void ProcessGetCFCheckPt(CNode& node, Peer& peer, DataStream& vRecv);
1077
1078
    /** Checks if address relay is permitted with peer. If needed, initializes
1079
     * the m_addr_known bloom filter and sets m_addr_relay_enabled to true.
1080
     *
1081
     *  @return   True if address relay is enabled with peer
1082
     *            False if address relay is disallowed
1083
     */
1084
    bool SetupAddressRelay(const CNode& node, Peer& peer) EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex);
1085
1086
    void ProcessAddrs(std::string_view msg_type, CNode& pfrom, Peer& peer, std::vector<CAddress>&& vAddr, const std::atomic<bool>& interruptMsgProc)
1087
        EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex, !m_peer_mutex);
1088
1089
    void AddAddressKnown(Peer& peer, const CAddress& addr) EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex);
1090
    void PushAddress(Peer& peer, const CAddress& addr) EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex);
1091
1092
    void LogBlockHeader(const CBlockIndex& index, const CNode& peer, bool via_compact_block);
1093
1094
    /// The transactions to be broadcast privately.
1095
    PrivateBroadcast m_tx_for_private_broadcast;
1096
};
1097
1098
const CNodeState* PeerManagerImpl::State(NodeId pnode) const
1099
0
{
1100
0
    std::map<NodeId, CNodeState>::const_iterator it = m_node_states.find(pnode);
1101
0
    if (it == m_node_states.end())
1102
0
        return nullptr;
1103
0
    return &it->second;
1104
0
}
1105
1106
CNodeState* PeerManagerImpl::State(NodeId pnode)
1107
0
{
1108
0
    return const_cast<CNodeState*>(std::as_const(*this).State(pnode));
1109
0
}
1110
1111
/**
1112
 * Whether the peer supports the address. For example, a peer that does not
1113
 * implement BIP155 cannot receive Tor v3 addresses because it requires
1114
 * ADDRv2 (BIP155) encoding.
1115
 */
1116
static bool IsAddrCompatible(const Peer& peer, const CAddress& addr)
1117
0
{
1118
0
    return peer.m_wants_addrv2 || addr.IsAddrV1Compatible();
1119
0
}
1120
1121
void PeerManagerImpl::AddAddressKnown(Peer& peer, const CAddress& addr)
1122
0
{
1123
0
    assert(peer.m_addr_known);
1124
0
    peer.m_addr_known->insert(addr.GetKey());
1125
0
}
1126
1127
void PeerManagerImpl::PushAddress(Peer& peer, const CAddress& addr)
1128
0
{
1129
    // Known checking here is only to save space from duplicates.
1130
    // Before sending, we'll filter it again for known addresses that were
1131
    // added after addresses were pushed.
1132
0
    assert(peer.m_addr_known);
1133
0
    if (addr.IsValid() && !peer.m_addr_known->contains(addr.GetKey()) && IsAddrCompatible(peer, addr)) {
1134
0
        if (peer.m_addrs_to_send.size() >= MAX_ADDR_TO_SEND) {
1135
0
            peer.m_addrs_to_send[m_rng.randrange(peer.m_addrs_to_send.size())] = addr;
1136
0
        } else {
1137
0
            peer.m_addrs_to_send.push_back(addr);
1138
0
        }
1139
0
    }
1140
0
}
1141
1142
static void AddKnownTx(Peer& peer, const uint256& hash)
1143
0
{
1144
0
    auto tx_relay = peer.GetTxRelay();
1145
0
    if (!tx_relay) return;
1146
1147
0
    LOCK(tx_relay->m_tx_inventory_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1148
0
    tx_relay->m_tx_inventory_known_filter.insert(hash);
1149
0
}
1150
1151
/** Whether this peer can serve us blocks. */
1152
static bool CanServeBlocks(const Peer& peer)
1153
0
{
1154
0
    return peer.m_their_services & (NODE_NETWORK|NODE_NETWORK_LIMITED);
1155
0
}
1156
1157
/** Whether this peer can only serve limited recent blocks (e.g. because
1158
 *  it prunes old blocks) */
1159
static bool IsLimitedPeer(const Peer& peer)
1160
0
{
1161
0
    return (!(peer.m_their_services & NODE_NETWORK) &&
1162
0
             (peer.m_their_services & NODE_NETWORK_LIMITED));
1163
0
}
1164
1165
/** Whether this peer can serve us witness data */
1166
static bool CanServeWitnesses(const Peer& peer)
1167
0
{
1168
0
    return peer.m_their_services & NODE_WITNESS;
1169
0
}
1170
1171
std::chrono::microseconds PeerManagerImpl::NextInvToInbounds(std::chrono::microseconds now,
1172
                                                             std::chrono::seconds average_interval,
1173
                                                             uint64_t network_key)
1174
0
{
1175
0
    auto [it, inserted] = m_next_inv_to_inbounds_per_network_key.try_emplace(network_key, 0us);
1176
0
    auto& timer{it->second};
1177
0
    if (timer < now) {
1178
0
        timer = now + m_rng.rand_exp_duration(average_interval);
1179
0
    }
1180
0
    return timer;
1181
0
}
1182
1183
bool PeerManagerImpl::IsBlockRequested(const uint256& hash)
1184
0
{
1185
0
    return mapBlocksInFlight.contains(hash);
1186
0
}
1187
1188
bool PeerManagerImpl::IsBlockRequestedFromOutbound(const uint256& hash)
1189
0
{
1190
0
    for (auto range = mapBlocksInFlight.equal_range(hash); range.first != range.second; range.first++) {
1191
0
        auto [nodeid, block_it] = range.first->second;
1192
0
        PeerRef peer{GetPeerRef(nodeid)};
1193
0
        if (peer && !peer->m_is_inbound) return true;
1194
0
    }
1195
1196
0
    return false;
1197
0
}
1198
1199
void PeerManagerImpl::RemoveBlockRequest(const uint256& hash, std::optional<NodeId> from_peer)
1200
0
{
1201
0
    auto range = mapBlocksInFlight.equal_range(hash);
1202
0
    if (range.first == range.second) {
1203
        // Block was not requested from any peer
1204
0
        return;
1205
0
    }
1206
1207
    // We should not have requested too many of this block
1208
0
    Assume(mapBlocksInFlight.count(hash) <= MAX_CMPCTBLOCKS_INFLIGHT_PER_BLOCK);
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1209
1210
0
    while (range.first != range.second) {
1211
0
        const auto& [node_id, list_it]{range.first->second};
1212
1213
0
        if (from_peer && *from_peer != node_id) {
1214
0
            range.first++;
1215
0
            continue;
1216
0
        }
1217
1218
0
        CNodeState& state = *Assert(State(node_id));
Line
Count
Source
113
0
#define Assert(val) inline_assertion_check<true>(val, std::source_location::current(), #val)
1219
1220
0
        if (state.vBlocksInFlight.begin() == list_it) {
1221
            // First block on the queue was received, update the start download time for the next one
1222
0
            state.m_downloading_since = std::max(state.m_downloading_since, GetTime<std::chrono::microseconds>());
1223
0
        }
1224
0
        state.vBlocksInFlight.erase(list_it);
1225
1226
0
        if (state.vBlocksInFlight.empty()) {
1227
            // Last validated block on the queue for this peer was received.
1228
0
            m_peers_downloading_from--;
1229
0
        }
1230
0
        state.m_stalling_since = 0us;
1231
1232
0
        range.first = mapBlocksInFlight.erase(range.first);
1233
0
    }
1234
0
}
1235
1236
bool PeerManagerImpl::BlockRequested(NodeId nodeid, const CBlockIndex& block, std::list<QueuedBlock>::iterator** pit)
1237
0
{
1238
0
    const uint256& hash{block.GetBlockHash()};
1239
1240
0
    CNodeState *state = State(nodeid);
1241
0
    assert(state != nullptr);
1242
1243
0
    Assume(mapBlocksInFlight.count(hash) <= MAX_CMPCTBLOCKS_INFLIGHT_PER_BLOCK);
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1244
1245
    // Short-circuit most stuff in case it is from the same node
1246
0
    for (auto range = mapBlocksInFlight.equal_range(hash); range.first != range.second; range.first++) {
1247
0
        if (range.first->second.first == nodeid) {
1248
0
            if (pit) {
1249
0
                *pit = &range.first->second.second;
1250
0
            }
1251
0
            return false;
1252
0
        }
1253
0
    }
1254
1255
    // Make sure it's not being fetched already from same peer.
1256
0
    RemoveBlockRequest(hash, nodeid);
1257
1258
0
    std::list<QueuedBlock>::iterator it = state->vBlocksInFlight.insert(state->vBlocksInFlight.end(),
1259
0
            {&block, std::unique_ptr<PartiallyDownloadedBlock>(pit ? new PartiallyDownloadedBlock(&m_mempool) : nullptr)});
1260
0
    if (state->vBlocksInFlight.size() == 1) {
1261
        // We're starting a block download (batch) from this peer.
1262
0
        state->m_downloading_since = GetTime<std::chrono::microseconds>();
1263
0
        m_peers_downloading_from++;
1264
0
    }
1265
0
    auto itInFlight = mapBlocksInFlight.insert(std::make_pair(hash, std::make_pair(nodeid, it)));
1266
0
    if (pit) {
1267
0
        *pit = &itInFlight->second.second;
1268
0
    }
1269
0
    return true;
1270
0
}
1271
1272
void PeerManagerImpl::MaybeSetPeerAsAnnouncingHeaderAndIDs(NodeId nodeid)
1273
0
{
1274
0
    AssertLockHeld(cs_main);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
1275
1276
    // When in -blocksonly mode, never request high-bandwidth mode from peers. Our
1277
    // mempool will not contain the transactions necessary to reconstruct the
1278
    // compact block.
1279
0
    if (m_opts.ignore_incoming_txs) return;
1280
1281
0
    CNodeState* nodestate = State(nodeid);
1282
0
    PeerRef peer{GetPeerRef(nodeid)};
1283
0
    if (!nodestate || !nodestate->m_provides_cmpctblocks) {
1284
        // Don't request compact blocks if the peer has not signalled support
1285
0
        return;
1286
0
    }
1287
1288
0
    int num_outbound_hb_peers = 0;
1289
0
    for (std::list<NodeId>::iterator it = lNodesAnnouncingHeaderAndIDs.begin(); it != lNodesAnnouncingHeaderAndIDs.end(); it++) {
1290
0
        if (*it == nodeid) {
1291
0
            lNodesAnnouncingHeaderAndIDs.erase(it);
1292
0
            lNodesAnnouncingHeaderAndIDs.push_back(nodeid);
1293
0
            return;
1294
0
        }
1295
0
        PeerRef peer_ref{GetPeerRef(*it)};
1296
0
        if (peer_ref && !peer_ref->m_is_inbound) ++num_outbound_hb_peers;
1297
0
    }
1298
0
    if (peer && peer->m_is_inbound) {
1299
        // If we're adding an inbound HB peer, make sure we're not removing
1300
        // our last outbound HB peer in the process.
1301
0
        if (lNodesAnnouncingHeaderAndIDs.size() >= 3 && num_outbound_hb_peers == 1) {
1302
0
            PeerRef remove_peer{GetPeerRef(lNodesAnnouncingHeaderAndIDs.front())};
1303
0
            if (remove_peer && !remove_peer->m_is_inbound) {
1304
                // Put the HB outbound peer in the second slot, so that it
1305
                // doesn't get removed.
1306
0
                std::swap(lNodesAnnouncingHeaderAndIDs.front(), *std::next(lNodesAnnouncingHeaderAndIDs.begin()));
1307
0
            }
1308
0
        }
1309
0
    }
1310
0
    m_connman.ForNode(nodeid, [this](CNode* pfrom) EXCLUSIVE_LOCKS_REQUIRED(::cs_main) {
1311
0
        AssertLockHeld(::cs_main);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
1312
0
        if (lNodesAnnouncingHeaderAndIDs.size() >= 3) {
1313
            // As per BIP152, we only get 3 of our peers to announce
1314
            // blocks using compact encodings.
1315
0
            m_connman.ForNode(lNodesAnnouncingHeaderAndIDs.front(), [this](CNode* pnodeStop){
1316
0
                MakeAndPushMessage(*pnodeStop, NetMsgType::SENDCMPCT, /*high_bandwidth=*/false, /*version=*/CMPCTBLOCKS_VERSION);
1317
                // save BIP152 bandwidth state: we select peer to be low-bandwidth
1318
0
                pnodeStop->m_bip152_highbandwidth_to = false;
1319
0
                return true;
1320
0
            });
1321
0
            lNodesAnnouncingHeaderAndIDs.pop_front();
1322
0
        }
1323
0
        MakeAndPushMessage(*pfrom, NetMsgType::SENDCMPCT, /*high_bandwidth=*/true, /*version=*/CMPCTBLOCKS_VERSION);
1324
        // save BIP152 bandwidth state: we select peer to be high-bandwidth
1325
0
        pfrom->m_bip152_highbandwidth_to = true;
1326
0
        lNodesAnnouncingHeaderAndIDs.push_back(pfrom->GetId());
1327
0
        return true;
1328
0
    });
1329
0
}
1330
1331
bool PeerManagerImpl::TipMayBeStale()
1332
0
{
1333
0
    AssertLockHeld(cs_main);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
1334
0
    const Consensus::Params& consensusParams = m_chainparams.GetConsensus();
1335
0
    if (m_last_tip_update.load() == 0s) {
1336
0
        m_last_tip_update = GetTime<std::chrono::seconds>();
1337
0
    }
1338
0
    return m_last_tip_update.load() < GetTime<std::chrono::seconds>() - std::chrono::seconds{consensusParams.nPowTargetSpacing * 3} && mapBlocksInFlight.empty();
1339
0
}
1340
1341
int64_t PeerManagerImpl::ApproximateBestBlockDepth() const
1342
0
{
1343
0
    return (GetTime<std::chrono::seconds>() - m_best_block_time.load()).count() / m_chainparams.GetConsensus().nPowTargetSpacing;
1344
0
}
1345
1346
bool PeerManagerImpl::CanDirectFetch()
1347
0
{
1348
0
    return m_chainman.ActiveChain().Tip()->Time() > NodeClock::now() - m_chainparams.GetConsensus().PowTargetSpacing() * 20;
1349
0
}
1350
1351
static bool PeerHasHeader(CNodeState *state, const CBlockIndex *pindex) EXCLUSIVE_LOCKS_REQUIRED(cs_main)
1352
0
{
1353
0
    if (state->pindexBestKnownBlock && pindex == state->pindexBestKnownBlock->GetAncestor(pindex->nHeight))
1354
0
        return true;
1355
0
    if (state->pindexBestHeaderSent && pindex == state->pindexBestHeaderSent->GetAncestor(pindex->nHeight))
1356
0
        return true;
1357
0
    return false;
1358
0
}
1359
1360
0
void PeerManagerImpl::ProcessBlockAvailability(NodeId nodeid) {
1361
0
    CNodeState *state = State(nodeid);
1362
0
    assert(state != nullptr);
1363
1364
0
    if (!state->hashLastUnknownBlock.IsNull()) {
1365
0
        const CBlockIndex* pindex = m_chainman.m_blockman.LookupBlockIndex(state->hashLastUnknownBlock);
1366
0
        if (pindex && pindex->nChainWork > 0) {
1367
0
            if (state->pindexBestKnownBlock == nullptr || pindex->nChainWork >= state->pindexBestKnownBlock->nChainWork) {
1368
0
                state->pindexBestKnownBlock = pindex;
1369
0
            }
1370
0
            state->hashLastUnknownBlock.SetNull();
1371
0
        }
1372
0
    }
1373
0
}
1374
1375
0
void PeerManagerImpl::UpdateBlockAvailability(NodeId nodeid, const uint256 &hash) {
1376
0
    CNodeState *state = State(nodeid);
1377
0
    assert(state != nullptr);
1378
1379
0
    ProcessBlockAvailability(nodeid);
1380
1381
0
    const CBlockIndex* pindex = m_chainman.m_blockman.LookupBlockIndex(hash);
1382
0
    if (pindex && pindex->nChainWork > 0) {
1383
        // An actually better block was announced.
1384
0
        if (state->pindexBestKnownBlock == nullptr || pindex->nChainWork >= state->pindexBestKnownBlock->nChainWork) {
1385
0
            state->pindexBestKnownBlock = pindex;
1386
0
        }
1387
0
    } else {
1388
        // An unknown block was announced; just assume that the latest one is the best one.
1389
0
        state->hashLastUnknownBlock = hash;
1390
0
    }
1391
0
}
1392
1393
// Logic for calculating which blocks to download from a given peer, given our current tip.
1394
void PeerManagerImpl::FindNextBlocksToDownload(const Peer& peer, unsigned int count, std::vector<const CBlockIndex*>& vBlocks, NodeId& nodeStaller)
1395
0
{
1396
0
    if (count == 0)
1397
0
        return;
1398
1399
0
    vBlocks.reserve(vBlocks.size() + count);
1400
0
    CNodeState *state = State(peer.m_id);
1401
0
    assert(state != nullptr);
1402
1403
    // Make sure pindexBestKnownBlock is up to date, we'll need it.
1404
0
    ProcessBlockAvailability(peer.m_id);
1405
1406
0
    if (state->pindexBestKnownBlock == nullptr || state->pindexBestKnownBlock->nChainWork < m_chainman.ActiveChain().Tip()->nChainWork || state->pindexBestKnownBlock->nChainWork < m_chainman.MinimumChainWork()) {
1407
        // This peer has nothing interesting.
1408
0
        return;
1409
0
    }
1410
1411
    // When syncing with AssumeUtxo and the snapshot has not yet been validated,
1412
    // abort downloading blocks from peers that don't have the snapshot block in their best chain.
1413
    // We can't reorg to this chain due to missing undo data until validation completes,
1414
    // so downloading blocks from it would be futile.
1415
0
    const CBlockIndex* snap_base{m_chainman.CurrentChainstate().SnapshotBase()};
1416
0
    if (snap_base && m_chainman.CurrentChainstate().m_assumeutxo == Assumeutxo::UNVALIDATED &&
1417
0
        state->pindexBestKnownBlock->GetAncestor(snap_base->nHeight) != snap_base) {
1418
0
        LogDebug(BCLog::NET, "Not downloading blocks from peer=%d, which doesn't have the snapshot block in its best chain.\n", peer.m_id);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
1419
0
        return;
1420
0
    }
1421
1422
    // Determine the forking point between the peer's chain and our chain:
1423
    // pindexLastCommonBlock is required to be an ancestor of pindexBestKnownBlock, and will be used as a starting point.
1424
    // It is being set to the fork point between the peer's best known block and the current tip, unless it is already set to
1425
    // an ancestor with more work than the fork point.
1426
0
    auto fork_point = LastCommonAncestor(state->pindexBestKnownBlock, m_chainman.ActiveTip());
1427
0
    if (state->pindexLastCommonBlock == nullptr ||
1428
0
        fork_point->nChainWork > state->pindexLastCommonBlock->nChainWork ||
1429
0
        state->pindexBestKnownBlock->GetAncestor(state->pindexLastCommonBlock->nHeight) != state->pindexLastCommonBlock) {
1430
0
        state->pindexLastCommonBlock = fork_point;
1431
0
    }
1432
0
    if (state->pindexLastCommonBlock == state->pindexBestKnownBlock)
1433
0
        return;
1434
1435
0
    const CBlockIndex *pindexWalk = state->pindexLastCommonBlock;
1436
    // Never fetch further than the best block we know the peer has, or more than BLOCK_DOWNLOAD_WINDOW + 1 beyond the last
1437
    // linked block we have in common with this peer. The +1 is so we can detect stalling, namely if we would be able to
1438
    // download that next block if the window were 1 larger.
1439
0
    int nWindowEnd = state->pindexLastCommonBlock->nHeight + BLOCK_DOWNLOAD_WINDOW;
1440
1441
0
    FindNextBlocks(vBlocks, peer, state, pindexWalk, count, nWindowEnd, &m_chainman.ActiveChain(), &nodeStaller);
1442
0
}
1443
1444
void PeerManagerImpl::TryDownloadingHistoricalBlocks(const Peer& peer, unsigned int count, std::vector<const CBlockIndex*>& vBlocks, const CBlockIndex *from_tip, const CBlockIndex* target_block)
1445
0
{
1446
0
    Assert(from_tip);
Line
Count
Source
113
0
#define Assert(val) inline_assertion_check<true>(val, std::source_location::current(), #val)
1447
0
    Assert(target_block);
Line
Count
Source
113
0
#define Assert(val) inline_assertion_check<true>(val, std::source_location::current(), #val)
1448
1449
0
    if (vBlocks.size() >= count) {
1450
0
        return;
1451
0
    }
1452
1453
0
    vBlocks.reserve(count);
1454
0
    CNodeState *state = Assert(State(peer.m_id));
Line
Count
Source
113
0
#define Assert(val) inline_assertion_check<true>(val, std::source_location::current(), #val)
1455
1456
0
    if (state->pindexBestKnownBlock == nullptr || state->pindexBestKnownBlock->GetAncestor(target_block->nHeight) != target_block) {
1457
        // This peer can't provide us the complete series of blocks leading up to the
1458
        // assumeutxo snapshot base.
1459
        //
1460
        // Presumably this peer's chain has less work than our ActiveChain()'s tip, or else we
1461
        // will eventually crash when we try to reorg to it. Let other logic
1462
        // deal with whether we disconnect this peer.
1463
        //
1464
        // TODO at some point in the future, we might choose to request what blocks
1465
        // this peer does have from the historical chain, despite it not having a
1466
        // complete history beneath the snapshot base.
1467
0
        return;
1468
0
    }
1469
1470
0
    FindNextBlocks(vBlocks, peer, state, from_tip, count, std::min<int>(from_tip->nHeight + BLOCK_DOWNLOAD_WINDOW, target_block->nHeight));
1471
0
}
1472
1473
void PeerManagerImpl::FindNextBlocks(std::vector<const CBlockIndex*>& vBlocks, const Peer& peer, CNodeState *state, const CBlockIndex *pindexWalk, unsigned int count, int nWindowEnd, const CChain* activeChain, NodeId* nodeStaller)
1474
0
{
1475
0
    std::vector<const CBlockIndex*> vToFetch;
1476
0
    int nMaxHeight = std::min<int>(state->pindexBestKnownBlock->nHeight, nWindowEnd + 1);
1477
0
    bool is_limited_peer = IsLimitedPeer(peer);
1478
0
    NodeId waitingfor = -1;
1479
0
    while (pindexWalk->nHeight < nMaxHeight) {
1480
        // Read up to 128 (or more, if more blocks than that are needed) successors of pindexWalk (towards
1481
        // pindexBestKnownBlock) into vToFetch. We fetch 128, because CBlockIndex::GetAncestor may be as expensive
1482
        // as iterating over ~100 CBlockIndex* entries anyway.
1483
0
        int nToFetch = std::min(nMaxHeight - pindexWalk->nHeight, std::max<int>(count - vBlocks.size(), 128));
1484
0
        vToFetch.resize(nToFetch);
1485
0
        pindexWalk = state->pindexBestKnownBlock->GetAncestor(pindexWalk->nHeight + nToFetch);
1486
0
        vToFetch[nToFetch - 1] = pindexWalk;
1487
0
        for (unsigned int i = nToFetch - 1; i > 0; i--) {
1488
0
            vToFetch[i - 1] = vToFetch[i]->pprev;
1489
0
        }
1490
1491
        // Iterate over those blocks in vToFetch (in forward direction), adding the ones that
1492
        // are not yet downloaded and not in flight to vBlocks. In the meantime, update
1493
        // pindexLastCommonBlock as long as all ancestors are already downloaded, or if it's
1494
        // already part of our chain (and therefore don't need it even if pruned).
1495
0
        for (const CBlockIndex* pindex : vToFetch) {
1496
0
            if (!pindex->IsValid(BLOCK_VALID_TREE)) {
1497
                // We consider the chain that this peer is on invalid.
1498
0
                return;
1499
0
            }
1500
1501
0
            if (!CanServeWitnesses(peer) && DeploymentActiveAt(*pindex, m_chainman, Consensus::DEPLOYMENT_SEGWIT)) {
1502
                // We wouldn't download this block or its descendants from this peer.
1503
0
                return;
1504
0
            }
1505
1506
0
            if (pindex->nStatus & BLOCK_HAVE_DATA || (activeChain && activeChain->Contains(pindex))) {
1507
0
                if (activeChain && pindex->HaveNumChainTxs()) {
1508
0
                    state->pindexLastCommonBlock = pindex;
1509
0
                }
1510
0
                continue;
1511
0
            }
1512
1513
            // Is block in-flight?
1514
0
            if (IsBlockRequested(pindex->GetBlockHash())) {
1515
0
                if (waitingfor == -1) {
1516
                    // This is the first already-in-flight block.
1517
0
                    waitingfor = mapBlocksInFlight.lower_bound(pindex->GetBlockHash())->second.first;
1518
0
                }
1519
0
                continue;
1520
0
            }
1521
1522
            // The block is not already downloaded, and not yet in flight.
1523
0
            if (pindex->nHeight > nWindowEnd) {
1524
                // We reached the end of the window.
1525
0
                if (vBlocks.size() == 0 && waitingfor != peer.m_id) {
1526
                    // We aren't able to fetch anything, but we would be if the download window was one larger.
1527
0
                    if (nodeStaller) *nodeStaller = waitingfor;
1528
0
                }
1529
0
                return;
1530
0
            }
1531
1532
            // Don't request blocks that go further than what limited peers can provide
1533
0
            if (is_limited_peer && (state->pindexBestKnownBlock->nHeight - pindex->nHeight >= static_cast<int>(NODE_NETWORK_LIMITED_MIN_BLOCKS) - 2 /* two blocks buffer for possible races */)) {
1534
0
                continue;
1535
0
            }
1536
1537
0
            vBlocks.push_back(pindex);
1538
0
            if (vBlocks.size() == count) {
1539
0
                return;
1540
0
            }
1541
0
        }
1542
0
    }
1543
0
}
1544
1545
} // namespace
1546
1547
void PeerManagerImpl::PushNodeVersion(CNode& pnode, const Peer& peer)
1548
0
{
1549
0
    uint64_t my_services;
1550
0
    int64_t my_time;
1551
0
    uint64_t your_services;
1552
0
    CService your_addr;
1553
0
    std::string my_user_agent;
1554
0
    int my_height;
1555
0
    bool my_tx_relay;
1556
0
    if (pnode.IsPrivateBroadcastConn()) {
1557
0
        my_services = NODE_NONE;
1558
0
        my_time = 0;
1559
0
        your_services = NODE_NONE;
1560
0
        your_addr = CService{};
1561
0
        my_user_agent = "/pynode:0.0.1/"; // Use a constant other than the default (or user-configured). See https://github.com/bitcoin/bitcoin/pull/27509#discussion_r1214671917
1562
0
        my_height = 0;
1563
0
        my_tx_relay = false;
1564
0
    } else {
1565
0
        const CAddress& addr{pnode.addr};
1566
0
        my_services = peer.m_our_services;
1567
0
        my_time = count_seconds(GetTime<std::chrono::seconds>());
1568
0
        your_services = addr.nServices;
1569
0
        your_addr = addr.IsRoutable() && !IsProxy(addr) && addr.IsAddrV1Compatible() ? CService{addr} : CService{};
1570
0
        my_user_agent = strSubVersion;
1571
0
        my_height = m_best_height;
1572
0
        my_tx_relay = !RejectIncomingTxs(pnode);
1573
0
    }
1574
1575
0
    MakeAndPushMessage(
1576
0
        pnode,
1577
0
        NetMsgType::VERSION,
1578
0
        PROTOCOL_VERSION,
1579
0
        my_services,
1580
0
        my_time,
1581
        // your_services + CNetAddr::V1(your_addr) is the pre-version-31402 serialization of your_addr (without nTime)
1582
0
        your_services, CNetAddr::V1(your_addr),
1583
        // same, for a dummy address
1584
0
        my_services, CNetAddr::V1(CService{}),
1585
0
        pnode.GetLocalNonce(),
1586
0
        my_user_agent,
1587
0
        my_height,
1588
0
        my_tx_relay);
1589
1590
0
    LogDebug(
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
1591
0
        BCLog::NET, "send version message: version=%d, blocks=%d%s, txrelay=%d, peer=%d\n",
1592
0
        PROTOCOL_VERSION, my_height,
1593
0
        fLogIPs ? strprintf(", them=%s", your_addr.ToStringAddrPort()) : "",
1594
0
        my_tx_relay, pnode.GetId());
1595
0
}
1596
1597
void PeerManagerImpl::UpdateLastBlockAnnounceTime(NodeId node, int64_t time_in_seconds)
1598
0
{
1599
0
    LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1600
0
    CNodeState *state = State(node);
1601
0
    if (state) state->m_last_block_announcement = time_in_seconds;
1602
0
}
1603
1604
void PeerManagerImpl::InitializeNode(const CNode& node, ServiceFlags our_services)
1605
0
{
1606
0
    NodeId nodeid = node.GetId();
1607
0
    {
1608
0
        LOCK(cs_main); // For m_node_states
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1609
0
        m_node_states.try_emplace(m_node_states.end(), nodeid);
1610
0
    }
1611
0
    WITH_LOCK(m_tx_download_mutex, m_txdownloadman.CheckIsEmpty(nodeid));
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
1612
1613
0
    if (NetPermissions::HasFlag(node.m_permission_flags, NetPermissionFlags::BloomFilter)) {
1614
0
        our_services = static_cast<ServiceFlags>(our_services | NODE_BLOOM);
1615
0
    }
1616
1617
0
    PeerRef peer = std::make_shared<Peer>(nodeid, our_services, node.IsInboundConn());
1618
0
    {
1619
0
        LOCK(m_peer_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1620
0
        m_peer_map.emplace_hint(m_peer_map.end(), nodeid, peer);
1621
0
    }
1622
0
}
1623
1624
void PeerManagerImpl::ReattemptInitialBroadcast(CScheduler& scheduler)
1625
0
{
1626
0
    std::set<Txid> unbroadcast_txids = m_mempool.GetUnbroadcastTxs();
1627
1628
0
    for (const auto& txid : unbroadcast_txids) {
1629
0
        CTransactionRef tx = m_mempool.get(txid);
1630
1631
0
        if (tx != nullptr) {
1632
0
            InitiateTxBroadcastToAll(txid, tx->GetWitnessHash());
1633
0
        } else {
1634
0
            m_mempool.RemoveUnbroadcastTx(txid, true);
1635
0
        }
1636
0
    }
1637
1638
    // Schedule next run for 10-15 minutes in the future.
1639
    // We add randomness on every cycle to avoid the possibility of P2P fingerprinting.
1640
0
    const auto delta = 10min + FastRandomContext().randrange<std::chrono::milliseconds>(5min);
1641
0
    scheduler.scheduleFromNow([&] { ReattemptInitialBroadcast(scheduler); }, delta);
1642
0
}
1643
1644
void PeerManagerImpl::ReattemptPrivateBroadcast(CScheduler& scheduler)
1645
0
{
1646
    // Remove stale transactions that are no longer relevant (e.g. already in
1647
    // the mempool or mined) and count the remaining ones.
1648
0
    size_t num_for_rebroadcast{0};
1649
0
    const auto stale_txs = m_tx_for_private_broadcast.GetStale();
1650
0
    if (!stale_txs.empty()) {
1651
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1652
0
        for (const auto& stale_tx : stale_txs) {
1653
0
            auto mempool_acceptable = m_chainman.ProcessTransaction(stale_tx, /*test_accept=*/true);
1654
0
            if (mempool_acceptable.m_result_type == MempoolAcceptResult::ResultType::VALID) {
1655
0
                LogDebug(BCLog::PRIVBROADCAST,
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
1656
0
                         "Reattempting broadcast of stale txid=%s wtxid=%s",
1657
0
                         stale_tx->GetHash().ToString(), stale_tx->GetWitnessHash().ToString());
1658
0
                ++num_for_rebroadcast;
1659
0
            } else {
1660
0
                LogDebug(BCLog::PRIVBROADCAST, "Giving up broadcast attempts for txid=%s wtxid=%s: %s",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
1661
0
                         stale_tx->GetHash().ToString(), stale_tx->GetWitnessHash().ToString(),
1662
0
                         mempool_acceptable.m_state.ToString());
1663
0
                m_tx_for_private_broadcast.Remove(stale_tx);
1664
0
            }
1665
0
        }
1666
1667
        // This could overshoot, but that is ok - we will open some private connections in vain.
1668
0
        m_connman.m_private_broadcast.NumToOpenAdd(num_for_rebroadcast);
1669
0
    }
1670
1671
0
    const auto delta{2min + FastRandomContext().randrange<std::chrono::milliseconds>(1min)};
1672
0
    scheduler.scheduleFromNow([&] { ReattemptPrivateBroadcast(scheduler); }, delta);
1673
0
}
1674
1675
void PeerManagerImpl::FinalizeNode(const CNode& node)
1676
0
{
1677
0
    NodeId nodeid = node.GetId();
1678
0
    {
1679
0
    LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1680
0
    {
1681
        // We remove the PeerRef from g_peer_map here, but we don't always
1682
        // destruct the Peer. Sometimes another thread is still holding a
1683
        // PeerRef, so the refcount is >= 1. Be careful not to do any
1684
        // processing here that assumes Peer won't be changed before it's
1685
        // destructed.
1686
0
        PeerRef peer = RemovePeer(nodeid);
1687
0
        assert(peer != nullptr);
1688
0
        m_wtxid_relay_peers -= peer->m_wtxid_relay;
1689
0
        assert(m_wtxid_relay_peers >= 0);
1690
0
    }
1691
0
    CNodeState *state = State(nodeid);
1692
0
    assert(state != nullptr);
1693
1694
0
    if (state->fSyncStarted)
1695
0
        nSyncStarted--;
1696
1697
0
    for (const QueuedBlock& entry : state->vBlocksInFlight) {
1698
0
        auto range = mapBlocksInFlight.equal_range(entry.pindex->GetBlockHash());
1699
0
        while (range.first != range.second) {
1700
0
            auto [node_id, list_it] = range.first->second;
1701
0
            if (node_id != nodeid) {
1702
0
                range.first++;
1703
0
            } else {
1704
0
                range.first = mapBlocksInFlight.erase(range.first);
1705
0
            }
1706
0
        }
1707
0
    }
1708
0
    {
1709
0
        LOCK(m_tx_download_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1710
0
        m_txdownloadman.DisconnectedPeer(nodeid);
1711
0
    }
1712
0
    if (m_txreconciliation) m_txreconciliation->ForgetPeer(nodeid);
1713
0
    m_num_preferred_download_peers -= state->fPreferredDownload;
1714
0
    m_peers_downloading_from -= (!state->vBlocksInFlight.empty());
1715
0
    assert(m_peers_downloading_from >= 0);
1716
0
    m_outbound_peers_with_protect_from_disconnect -= state->m_chain_sync.m_protect;
1717
0
    assert(m_outbound_peers_with_protect_from_disconnect >= 0);
1718
1719
0
    m_node_states.erase(nodeid);
1720
1721
0
    if (m_node_states.empty()) {
1722
        // Do a consistency check after the last peer is removed.
1723
0
        assert(mapBlocksInFlight.empty());
1724
0
        assert(m_num_preferred_download_peers == 0);
1725
0
        assert(m_peers_downloading_from == 0);
1726
0
        assert(m_outbound_peers_with_protect_from_disconnect == 0);
1727
0
        assert(m_wtxid_relay_peers == 0);
1728
0
        WITH_LOCK(m_tx_download_mutex, m_txdownloadman.CheckIsEmpty());
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
1729
0
    }
1730
0
    } // cs_main
1731
0
    if (node.fSuccessfullyConnected &&
1732
0
        !node.IsBlockOnlyConn() && !node.IsPrivateBroadcastConn() && !node.IsInboundConn()) {
1733
        // Only change visible addrman state for full outbound peers.  We don't
1734
        // call Connected() for feeler connections since they don't have
1735
        // fSuccessfullyConnected set. Also don't call Connected() for private broadcast
1736
        // connections since they could leak information in addrman.
1737
0
        m_addrman.Connected(node.addr);
1738
0
    }
1739
0
    {
1740
0
        LOCK(m_headers_presync_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1741
0
        m_headers_presync_stats.erase(nodeid);
1742
0
    }
1743
0
    if (node.IsPrivateBroadcastConn() &&
1744
0
        !m_tx_for_private_broadcast.DidNodeConfirmReception(nodeid) &&
1745
0
        m_tx_for_private_broadcast.HavePendingTransactions()) {
1746
1747
0
        m_connman.m_private_broadcast.NumToOpenAdd(1);
1748
0
    }
1749
0
    LogDebug(BCLog::NET, "Cleared nodestate for peer=%d\n", nodeid);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
1750
0
}
1751
1752
bool PeerManagerImpl::HasAllDesirableServiceFlags(ServiceFlags services) const
1753
0
{
1754
    // Shortcut for (services & GetDesirableServiceFlags(services)) == GetDesirableServiceFlags(services)
1755
0
    return !(GetDesirableServiceFlags(services) & (~services));
1756
0
}
1757
1758
ServiceFlags PeerManagerImpl::GetDesirableServiceFlags(ServiceFlags services) const
1759
0
{
1760
0
    if (services & NODE_NETWORK_LIMITED) {
1761
        // Limited peers are desirable when we are close to the tip.
1762
0
        if (ApproximateBestBlockDepth() < NODE_NETWORK_LIMITED_ALLOW_CONN_BLOCKS) {
1763
0
            return ServiceFlags(NODE_NETWORK_LIMITED | NODE_WITNESS);
1764
0
        }
1765
0
    }
1766
0
    return ServiceFlags(NODE_NETWORK | NODE_WITNESS);
1767
0
}
1768
1769
PeerRef PeerManagerImpl::GetPeerRef(NodeId id) const
1770
0
{
1771
0
    LOCK(m_peer_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1772
0
    auto it = m_peer_map.find(id);
1773
0
    return it != m_peer_map.end() ? it->second : nullptr;
1774
0
}
1775
1776
PeerRef PeerManagerImpl::RemovePeer(NodeId id)
1777
0
{
1778
0
    PeerRef ret;
1779
0
    LOCK(m_peer_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1780
0
    auto it = m_peer_map.find(id);
1781
0
    if (it != m_peer_map.end()) {
1782
0
        ret = std::move(it->second);
1783
0
        m_peer_map.erase(it);
1784
0
    }
1785
0
    return ret;
1786
0
}
1787
1788
bool PeerManagerImpl::GetNodeStateStats(NodeId nodeid, CNodeStateStats& stats) const
1789
0
{
1790
0
    {
1791
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1792
0
        const CNodeState* state = State(nodeid);
1793
0
        if (state == nullptr)
1794
0
            return false;
1795
0
        stats.nSyncHeight = state->pindexBestKnownBlock ? state->pindexBestKnownBlock->nHeight : -1;
1796
0
        stats.nCommonHeight = state->pindexLastCommonBlock ? state->pindexLastCommonBlock->nHeight : -1;
1797
0
        for (const QueuedBlock& queue : state->vBlocksInFlight) {
1798
0
            if (queue.pindex)
1799
0
                stats.vHeightInFlight.push_back(queue.pindex->nHeight);
1800
0
        }
1801
0
    }
1802
1803
0
    PeerRef peer = GetPeerRef(nodeid);
1804
0
    if (peer == nullptr) return false;
1805
0
    stats.their_services = peer->m_their_services;
1806
    // It is common for nodes with good ping times to suddenly become lagged,
1807
    // due to a new block arriving or other large transfer.
1808
    // Merely reporting pingtime might fool the caller into thinking the node was still responsive,
1809
    // since pingtime does not update until the ping is complete, which might take a while.
1810
    // So, if a ping is taking an unusually long time in flight,
1811
    // the caller can immediately detect that this is happening.
1812
0
    auto ping_wait{0us};
1813
0
    if ((0 != peer->m_ping_nonce_sent) && (0 != peer->m_ping_start.load().count())) {
1814
0
        ping_wait = GetTime<std::chrono::microseconds>() - peer->m_ping_start.load();
1815
0
    }
1816
1817
0
    if (auto tx_relay = peer->GetTxRelay(); tx_relay != nullptr) {
1818
0
        stats.m_relay_txs = WITH_LOCK(tx_relay->m_bloom_filter_mutex, return tx_relay->m_relay_txs);
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
1819
0
        stats.m_fee_filter_received = tx_relay->m_fee_filter_received.load();
1820
0
        LOCK(tx_relay->m_tx_inventory_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1821
0
        stats.m_last_inv_seq = tx_relay->m_last_inv_sequence;
1822
0
        stats.m_inv_to_send = tx_relay->m_tx_inventory_to_send.size();
1823
0
    } else {
1824
0
        stats.m_relay_txs = false;
1825
0
        stats.m_fee_filter_received = 0;
1826
0
        stats.m_inv_to_send = 0;
1827
0
    }
1828
1829
0
    stats.m_ping_wait = ping_wait;
1830
0
    stats.m_addr_processed = peer->m_addr_processed.load();
1831
0
    stats.m_addr_rate_limited = peer->m_addr_rate_limited.load();
1832
0
    stats.m_addr_relay_enabled = peer->m_addr_relay_enabled.load();
1833
0
    {
1834
0
        LOCK(peer->m_headers_sync_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1835
0
        if (peer->m_headers_sync) {
1836
0
            stats.presync_height = peer->m_headers_sync->GetPresyncHeight();
1837
0
        }
1838
0
    }
1839
0
    stats.time_offset = peer->m_time_offset;
1840
1841
0
    return true;
1842
0
}
1843
1844
std::vector<node::TxOrphanage::OrphanInfo> PeerManagerImpl::GetOrphanTransactions()
1845
0
{
1846
0
    LOCK(m_tx_download_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1847
0
    return m_txdownloadman.GetOrphanTransactions();
1848
0
}
1849
1850
PeerManagerInfo PeerManagerImpl::GetInfo() const
1851
0
{
1852
0
    return PeerManagerInfo{
1853
0
        .median_outbound_time_offset = m_outbound_time_offsets.Median(),
1854
0
        .ignores_incoming_txs = m_opts.ignore_incoming_txs,
1855
0
    };
1856
0
}
1857
1858
std::vector<PrivateBroadcast::TxBroadcastInfo> PeerManagerImpl::GetPrivateBroadcastInfo() const
1859
0
{
1860
0
    return m_tx_for_private_broadcast.GetBroadcastInfo();
1861
0
}
1862
1863
std::vector<CTransactionRef> PeerManagerImpl::AbortPrivateBroadcast(const uint256& id)
1864
0
{
1865
0
    const auto snapshot{m_tx_for_private_broadcast.GetBroadcastInfo()};
1866
0
    std::vector<CTransactionRef> removed_txs;
1867
1868
0
    size_t connections_cancelled{0};
1869
0
    for (const auto& [tx, _] : snapshot) {
1870
0
        if (tx->GetHash().ToUint256() != id && tx->GetWitnessHash().ToUint256() != id) continue;
1871
0
        if (const auto peer_acks{m_tx_for_private_broadcast.Remove(tx)}) {
1872
0
            removed_txs.push_back(tx);
1873
0
            if (NUM_PRIVATE_BROADCAST_PER_TX > *peer_acks) {
1874
0
                connections_cancelled += (NUM_PRIVATE_BROADCAST_PER_TX - *peer_acks);
1875
0
            }
1876
0
        }
1877
0
    }
1878
0
    m_connman.m_private_broadcast.NumToOpenSub(connections_cancelled);
1879
1880
0
    return removed_txs;
1881
0
}
1882
1883
void PeerManagerImpl::AddToCompactExtraTransactions(const CTransactionRef& tx)
1884
0
{
1885
0
    if (m_opts.max_extra_txs <= 0)
1886
0
        return;
1887
0
    if (!vExtraTxnForCompact.size())
1888
0
        vExtraTxnForCompact.resize(m_opts.max_extra_txs);
1889
0
    vExtraTxnForCompact[vExtraTxnForCompactIt] = std::make_pair(tx->GetWitnessHash(), tx);
1890
0
    vExtraTxnForCompactIt = (vExtraTxnForCompactIt + 1) % m_opts.max_extra_txs;
1891
0
}
1892
1893
void PeerManagerImpl::Misbehaving(Peer& peer, const std::string& message)
1894
0
{
1895
0
    LOCK(peer.m_misbehavior_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1896
1897
0
    const std::string message_prefixed = message.empty() ? "" : (": " + message);
1898
0
    peer.m_should_discourage = true;
1899
0
    LogDebug(BCLog::NET, "Misbehaving: peer=%d%s\n", peer.m_id, message_prefixed);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
1900
0
    TRACEPOINT(net, misbehaving_connection,
1901
0
        peer.m_id,
1902
0
        message.c_str()
1903
0
    );
1904
0
}
1905
1906
void PeerManagerImpl::MaybePunishNodeForBlock(NodeId nodeid, const BlockValidationState& state,
1907
                                              bool via_compact_block, const std::string& message)
1908
0
{
1909
0
    PeerRef peer{GetPeerRef(nodeid)};
1910
0
    switch (state.GetResult()) {
1911
0
    case BlockValidationResult::BLOCK_RESULT_UNSET:
1912
0
        break;
1913
0
    case BlockValidationResult::BLOCK_HEADER_LOW_WORK:
1914
        // We didn't try to process the block because the header chain may have
1915
        // too little work.
1916
0
        break;
1917
    // The node is providing invalid data:
1918
0
    case BlockValidationResult::BLOCK_CONSENSUS:
1919
0
    case BlockValidationResult::BLOCK_MUTATED:
1920
0
        if (!via_compact_block) {
1921
0
            if (peer) Misbehaving(*peer, message);
1922
0
            return;
1923
0
        }
1924
0
        break;
1925
0
    case BlockValidationResult::BLOCK_CACHED_INVALID:
1926
0
        {
1927
            // Discourage outbound (but not inbound) peers if on an invalid chain.
1928
            // Exempt HB compact block peers. Manual connections are always protected from discouragement.
1929
0
            if (peer && !via_compact_block && !peer->m_is_inbound) {
1930
0
                if (peer) Misbehaving(*peer, message);
1931
0
                return;
1932
0
            }
1933
0
            break;
1934
0
        }
1935
0
    case BlockValidationResult::BLOCK_INVALID_HEADER:
1936
0
    case BlockValidationResult::BLOCK_INVALID_PREV:
1937
0
        if (peer) Misbehaving(*peer, message);
1938
0
        return;
1939
    // Conflicting (but not necessarily invalid) data or different policy:
1940
0
    case BlockValidationResult::BLOCK_MISSING_PREV:
1941
0
        if (peer) Misbehaving(*peer, message);
1942
0
        return;
1943
0
    case BlockValidationResult::BLOCK_TIME_FUTURE:
1944
0
        break;
1945
0
    }
1946
0
    if (message != "") {
1947
0
        LogDebug(BCLog::NET, "peer=%d: %s\n", nodeid, message);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
1948
0
    }
1949
0
}
1950
1951
bool PeerManagerImpl::BlockRequestAllowed(const CBlockIndex& block_index)
1952
0
{
1953
0
    AssertLockHeld(cs_main);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
1954
0
    if (m_chainman.ActiveChain().Contains(&block_index)) return true;
1955
0
    return block_index.IsValid(BLOCK_VALID_SCRIPTS) && (m_chainman.m_best_header != nullptr) &&
1956
0
           (m_chainman.m_best_header->GetBlockTime() - block_index.GetBlockTime() < STALE_RELAY_AGE_LIMIT) &&
1957
0
           (GetBlockProofEquivalentTime(*m_chainman.m_best_header, block_index, *m_chainman.m_best_header, m_chainparams.GetConsensus()) < STALE_RELAY_AGE_LIMIT);
1958
0
}
1959
1960
util::Expected<void, std::string> PeerManagerImpl::FetchBlock(NodeId peer_id, const CBlockIndex& block_index)
1961
0
{
1962
0
    if (m_chainman.m_blockman.LoadingBlocks()) return util::Unexpected{"Loading blocks ..."};
1963
1964
    // Ensure this peer exists and hasn't been disconnected
1965
0
    PeerRef peer = GetPeerRef(peer_id);
1966
0
    if (peer == nullptr) return util::Unexpected{"Peer does not exist"};
1967
1968
    // Ignore pre-segwit peers
1969
0
    if (!CanServeWitnesses(*peer)) return util::Unexpected{"Pre-SegWit peer"};
1970
1971
0
    LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1972
1973
    // Forget about all prior requests
1974
0
    RemoveBlockRequest(block_index.GetBlockHash(), std::nullopt);
1975
1976
    // Mark block as in-flight
1977
0
    if (!BlockRequested(peer_id, block_index)) return util::Unexpected{"Already requested from this peer"};
1978
1979
    // Construct message to request the block
1980
0
    const uint256& hash{block_index.GetBlockHash()};
1981
0
    std::vector<CInv> invs{CInv(MSG_BLOCK | MSG_WITNESS_FLAG, hash)};
1982
1983
    // Send block request message to the peer
1984
0
    bool success = m_connman.ForNode(peer_id, [this, &invs](CNode* node) {
1985
0
        this->MakeAndPushMessage(*node, NetMsgType::GETDATA, invs);
1986
0
        return true;
1987
0
    });
1988
1989
0
    if (!success) return util::Unexpected{"Peer not fully connected"};
1990
1991
0
    LogDebug(BCLog::NET, "Requesting block %s from peer=%d\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
1992
0
                 hash.ToString(), peer_id);
1993
0
    return {};
1994
0
}
1995
1996
std::unique_ptr<PeerManager> PeerManager::make(CConnman& connman, AddrMan& addrman,
1997
                                               BanMan* banman, ChainstateManager& chainman,
1998
                                               CTxMemPool& pool, node::Warnings& warnings, Options opts)
1999
0
{
2000
0
    return std::make_unique<PeerManagerImpl>(connman, addrman, banman, chainman, pool, warnings, opts);
2001
0
}
2002
2003
PeerManagerImpl::PeerManagerImpl(CConnman& connman, AddrMan& addrman,
2004
                                 BanMan* banman, ChainstateManager& chainman,
2005
                                 CTxMemPool& pool, node::Warnings& warnings, Options opts)
2006
0
    : m_rng{opts.deterministic_rng},
2007
0
      m_fee_filter_rounder{CFeeRate{DEFAULT_MIN_RELAY_TX_FEE}, m_rng},
2008
0
      m_chainparams(chainman.GetParams()),
2009
0
      m_connman(connman),
2010
0
      m_addrman(addrman),
2011
0
      m_banman(banman),
2012
0
      m_chainman(chainman),
2013
0
      m_mempool(pool),
2014
0
      m_txdownloadman(node::TxDownloadOptions{pool, m_rng, opts.deterministic_rng}),
2015
0
      m_warnings{warnings},
2016
0
      m_opts{opts}
2017
0
{
2018
    // While Erlay support is incomplete, it must be enabled explicitly via -txreconciliation.
2019
    // This argument can go away after Erlay support is complete.
2020
0
    if (opts.reconcile_txs) {
2021
0
        m_txreconciliation = std::make_unique<TxReconciliationTracker>(TXRECONCILIATION_VERSION);
2022
0
    }
2023
0
}
2024
2025
void PeerManagerImpl::StartScheduledTasks(CScheduler& scheduler)
2026
0
{
2027
    // Stale tip checking and peer eviction are on two different timers, but we
2028
    // don't want them to get out of sync due to drift in the scheduler, so we
2029
    // combine them in one function and schedule at the quicker (peer-eviction)
2030
    // timer.
2031
0
    static_assert(EXTRA_PEER_CHECK_INTERVAL < STALE_CHECK_INTERVAL, "peer eviction timer should be less than stale tip check timer");
2032
0
    scheduler.scheduleEvery([this] { this->CheckForStaleTipAndEvictPeers(); }, std::chrono::seconds{EXTRA_PEER_CHECK_INTERVAL});
2033
2034
    // schedule next run for 10-15 minutes in the future
2035
0
    const auto delta = 10min + FastRandomContext().randrange<std::chrono::milliseconds>(5min);
2036
0
    scheduler.scheduleFromNow([&] { ReattemptInitialBroadcast(scheduler); }, delta);
2037
2038
0
    if (m_opts.private_broadcast) {
2039
0
        scheduler.scheduleFromNow([&] { ReattemptPrivateBroadcast(scheduler); }, 0min);
2040
0
    }
2041
0
}
2042
2043
void PeerManagerImpl::ActiveTipChange(const CBlockIndex& new_tip, bool is_ibd)
2044
0
{
2045
    // Ensure mempool mutex was released, otherwise deadlock may occur if another thread holding
2046
    // m_tx_download_mutex waits on the mempool mutex.
2047
0
    AssertLockNotHeld(m_mempool.cs);
Line
Count
Source
147
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
2048
0
    AssertLockNotHeld(m_tx_download_mutex);
Line
Count
Source
147
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
2049
2050
0
    if (!is_ibd) {
2051
0
        LOCK(m_tx_download_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2052
        // If the chain tip has changed, previously rejected transactions might now be valid, e.g. due
2053
        // to a timelock. Reset the rejection filters to give those transactions another chance if we
2054
        // see them again.
2055
0
        m_txdownloadman.ActiveTipChange();
2056
0
    }
2057
0
}
2058
2059
/**
2060
 * Evict orphan txn pool entries based on a newly connected
2061
 * block, remember the recently confirmed transactions, and delete tracked
2062
 * announcements for them. Also save the time of the last tip update and
2063
 * possibly reduce dynamic block stalling timeout.
2064
 */
2065
void PeerManagerImpl::BlockConnected(
2066
    const ChainstateRole& role,
2067
    const std::shared_ptr<const CBlock>& pblock,
2068
    const CBlockIndex* pindex)
2069
0
{
2070
    // Update this for all chainstate roles so that we don't mistakenly see peers
2071
    // helping us do background IBD as having a stale tip.
2072
0
    m_last_tip_update = GetTime<std::chrono::seconds>();
2073
2074
    // In case the dynamic timeout was doubled once or more, reduce it slowly back to its default value
2075
0
    auto stalling_timeout = m_block_stalling_timeout.load();
2076
0
    Assume(stalling_timeout >= BLOCK_STALLING_TIMEOUT_DEFAULT);
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
2077
0
    if (stalling_timeout != BLOCK_STALLING_TIMEOUT_DEFAULT) {
2078
0
        const auto new_timeout = std::max(std::chrono::duration_cast<std::chrono::seconds>(stalling_timeout * 0.85), BLOCK_STALLING_TIMEOUT_DEFAULT);
2079
0
        if (m_block_stalling_timeout.compare_exchange_strong(stalling_timeout, new_timeout)) {
2080
0
            LogDebug(BCLog::NET, "Decreased stalling timeout to %d seconds\n", count_seconds(new_timeout));
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2081
0
        }
2082
0
    }
2083
2084
    // The following task can be skipped since we don't maintain a mempool for
2085
    // the historical chainstate, or during ibd since we don't receive incoming
2086
    // transactions from peers into the mempool.
2087
0
    if (!role.historical && !m_chainman.IsInitialBlockDownload()) {
2088
0
        LOCK(m_tx_download_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2089
0
        m_txdownloadman.BlockConnected(pblock);
2090
0
    }
2091
0
}
2092
2093
void PeerManagerImpl::BlockDisconnected(const std::shared_ptr<const CBlock> &block, const CBlockIndex* pindex)
2094
0
{
2095
0
    LOCK(m_tx_download_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2096
0
    m_txdownloadman.BlockDisconnected();
2097
0
}
2098
2099
/**
2100
 * Maintain state about the best-seen block and fast-announce a compact block
2101
 * to compatible peers.
2102
 */
2103
void PeerManagerImpl::NewPoWValidBlock(const CBlockIndex *pindex, const std::shared_ptr<const CBlock>& pblock)
2104
0
{
2105
0
    auto pcmpctblock = std::make_shared<const CBlockHeaderAndShortTxIDs>(*pblock, FastRandomContext().rand64());
2106
2107
0
    LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2108
2109
0
    if (pindex->nHeight <= m_highest_fast_announce)
2110
0
        return;
2111
0
    m_highest_fast_announce = pindex->nHeight;
2112
2113
0
    if (!DeploymentActiveAt(*pindex, m_chainman, Consensus::DEPLOYMENT_SEGWIT)) return;
2114
2115
0
    uint256 hashBlock(pblock->GetHash());
2116
0
    const std::shared_future<CSerializedNetMsg> lazy_ser{
2117
0
        std::async(std::launch::deferred, [&] { return NetMsg::Make(NetMsgType::CMPCTBLOCK, *pcmpctblock); })};
2118
2119
0
    {
2120
0
        auto most_recent_block_txs = std::make_unique<std::map<GenTxid, CTransactionRef>>();
2121
0
        for (const auto& tx : pblock->vtx) {
2122
0
            most_recent_block_txs->emplace(tx->GetHash(), tx);
2123
0
            most_recent_block_txs->emplace(tx->GetWitnessHash(), tx);
2124
0
        }
2125
2126
0
        LOCK(m_most_recent_block_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2127
0
        m_most_recent_block_hash = hashBlock;
2128
0
        m_most_recent_block = pblock;
2129
0
        m_most_recent_compact_block = pcmpctblock;
2130
0
        m_most_recent_block_txs = std::move(most_recent_block_txs);
2131
0
    }
2132
2133
0
    m_connman.ForEachNode([this, pindex, &lazy_ser, &hashBlock](CNode* pnode) EXCLUSIVE_LOCKS_REQUIRED(::cs_main) {
2134
0
        AssertLockHeld(::cs_main);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
2135
2136
0
        if (pnode->GetCommonVersion() < INVALID_CB_NO_BAN_VERSION || pnode->fDisconnect)
2137
0
            return;
2138
0
        ProcessBlockAvailability(pnode->GetId());
2139
0
        CNodeState &state = *State(pnode->GetId());
2140
        // If the peer has, or we announced to them the previous block already,
2141
        // but we don't think they have this one, go ahead and announce it
2142
0
        if (state.m_requested_hb_cmpctblocks && !PeerHasHeader(&state, pindex) && PeerHasHeader(&state, pindex->pprev)) {
2143
2144
0
            LogDebug(BCLog::NET, "%s sending header-and-ids %s to peer=%d\n", "PeerManager::NewPoWValidBlock",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2145
0
                    hashBlock.ToString(), pnode->GetId());
2146
2147
0
            const CSerializedNetMsg& ser_cmpctblock{lazy_ser.get()};
2148
0
            PushMessage(*pnode, ser_cmpctblock.Copy());
2149
0
            state.pindexBestHeaderSent = pindex;
2150
0
        }
2151
0
    });
2152
0
}
2153
2154
/**
2155
 * Update our best height and announce any block hashes which weren't previously
2156
 * in m_chainman.ActiveChain() to our peers.
2157
 */
2158
void PeerManagerImpl::UpdatedBlockTip(const CBlockIndex *pindexNew, const CBlockIndex *pindexFork, bool fInitialDownload)
2159
0
{
2160
0
    SetBestBlock(pindexNew->nHeight, std::chrono::seconds{pindexNew->GetBlockTime()});
2161
2162
    // Don't relay inventory during initial block download.
2163
0
    if (fInitialDownload) return;
2164
2165
    // Find the hashes of all blocks that weren't previously in the best chain.
2166
0
    std::vector<uint256> vHashes;
2167
0
    const CBlockIndex *pindexToAnnounce = pindexNew;
2168
0
    while (pindexToAnnounce != pindexFork) {
2169
0
        vHashes.push_back(pindexToAnnounce->GetBlockHash());
2170
0
        pindexToAnnounce = pindexToAnnounce->pprev;
2171
0
        if (vHashes.size() == MAX_BLOCKS_TO_ANNOUNCE) {
2172
            // Limit announcements in case of a huge reorganization.
2173
            // Rely on the peer's synchronization mechanism in that case.
2174
0
            break;
2175
0
        }
2176
0
    }
2177
2178
0
    {
2179
0
        LOCK(m_peer_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2180
0
        for (auto& it : m_peer_map) {
2181
0
            Peer& peer = *it.second;
2182
0
            LOCK(peer.m_block_inv_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2183
0
            for (const uint256& hash : vHashes | std::views::reverse) {
2184
0
                peer.m_blocks_for_headers_relay.push_back(hash);
2185
0
            }
2186
0
        }
2187
0
    }
2188
2189
0
    m_connman.WakeMessageHandler();
2190
0
}
2191
2192
/**
2193
 * Handle invalid block rejection and consequent peer discouragement, maintain which
2194
 * peers announce compact blocks.
2195
 */
2196
void PeerManagerImpl::BlockChecked(const std::shared_ptr<const CBlock>& block, const BlockValidationState& state)
2197
0
{
2198
0
    LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2199
2200
0
    const uint256 hash(block->GetHash());
2201
0
    std::map<uint256, std::pair<NodeId, bool>>::iterator it = mapBlockSource.find(hash);
2202
2203
    // If the block failed validation, we know where it came from and we're still connected
2204
    // to that peer, maybe punish.
2205
0
    if (state.IsInvalid() &&
2206
0
        it != mapBlockSource.end() &&
2207
0
        State(it->second.first)) {
2208
0
            MaybePunishNodeForBlock(/*nodeid=*/ it->second.first, state, /*via_compact_block=*/ !it->second.second);
2209
0
    }
2210
    // Check that:
2211
    // 1. The block is valid
2212
    // 2. We're not in initial block download
2213
    // 3. This is currently the best block we're aware of. We haven't updated
2214
    //    the tip yet so we have no way to check this directly here. Instead we
2215
    //    just check that there are currently no other blocks in flight.
2216
0
    else if (state.IsValid() &&
2217
0
             !m_chainman.IsInitialBlockDownload() &&
2218
0
             mapBlocksInFlight.count(hash) == mapBlocksInFlight.size()) {
2219
0
        if (it != mapBlockSource.end()) {
2220
0
            MaybeSetPeerAsAnnouncingHeaderAndIDs(it->second.first);
2221
0
        }
2222
0
    }
2223
0
    if (it != mapBlockSource.end())
2224
0
        mapBlockSource.erase(it);
2225
0
}
2226
2227
//////////////////////////////////////////////////////////////////////////////
2228
//
2229
// Messages
2230
//
2231
2232
bool PeerManagerImpl::AlreadyHaveBlock(const uint256& block_hash)
2233
0
{
2234
0
    return m_chainman.m_blockman.LookupBlockIndex(block_hash) != nullptr;
2235
0
}
2236
2237
void PeerManagerImpl::SendPings()
2238
0
{
2239
0
    LOCK(m_peer_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2240
0
    for(auto& it : m_peer_map) it.second->m_ping_queued = true;
2241
0
}
2242
2243
void PeerManagerImpl::InitiateTxBroadcastToAll(const Txid& txid, const Wtxid& wtxid)
2244
0
{
2245
0
    LOCK(m_peer_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2246
0
    for(auto& it : m_peer_map) {
2247
0
        Peer& peer = *it.second;
2248
0
        auto tx_relay = peer.GetTxRelay();
2249
0
        if (!tx_relay) continue;
2250
2251
0
        LOCK(tx_relay->m_tx_inventory_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2252
        // Only queue transactions for announcement once the version handshake
2253
        // is completed. The time of arrival for these transactions is
2254
        // otherwise at risk of leaking to a spy, if the spy is able to
2255
        // distinguish transactions received during the handshake from the rest
2256
        // in the announcement.
2257
0
        if (tx_relay->m_next_inv_send_time == 0s) continue;
2258
2259
0
        const uint256& hash{peer.m_wtxid_relay ? wtxid.ToUint256() : txid.ToUint256()};
2260
0
        if (!tx_relay->m_tx_inventory_known_filter.contains(hash)) {
2261
0
            tx_relay->m_tx_inventory_to_send.insert(wtxid);
2262
0
        }
2263
0
    }
2264
0
}
2265
2266
void PeerManagerImpl::InitiateTxBroadcastPrivate(const CTransactionRef& tx)
2267
0
{
2268
0
    const auto txstr{strprintf("txid=%s, wtxid=%s", tx->GetHash().ToString(), tx->GetWitnessHash().ToString())};
Line
Count
Source
1172
0
#define strprintf tfm::format
2269
0
    if (m_tx_for_private_broadcast.Add(tx)) {
2270
0
        LogDebug(BCLog::PRIVBROADCAST, "Requesting %d new connections due to %s", NUM_PRIVATE_BROADCAST_PER_TX, txstr);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2271
0
        m_connman.m_private_broadcast.NumToOpenAdd(NUM_PRIVATE_BROADCAST_PER_TX);
2272
0
    } else {
2273
0
        LogDebug(BCLog::PRIVBROADCAST, "Ignoring unnecessary request to schedule an already scheduled transaction: %s", txstr);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2274
0
    }
2275
0
}
2276
2277
void PeerManagerImpl::RelayAddress(NodeId originator,
2278
                                   const CAddress& addr,
2279
                                   bool fReachable)
2280
0
{
2281
    // We choose the same nodes within a given 24h window (if the list of connected
2282
    // nodes does not change) and we don't relay to nodes that already know an
2283
    // address. So within 24h we will likely relay a given address once. This is to
2284
    // prevent a peer from unjustly giving their address better propagation by sending
2285
    // it to us repeatedly.
2286
2287
0
    if (!fReachable && !addr.IsRelayable()) return;
2288
2289
    // Relay to a limited number of other nodes
2290
    // Use deterministic randomness to send to the same nodes for 24 hours
2291
    // at a time so the m_addr_knowns of the chosen nodes prevent repeats
2292
0
    const uint64_t hash_addr{CServiceHash(0, 0)(addr)};
2293
0
    const auto current_time{GetTime<std::chrono::seconds>()};
2294
    // Adding address hash makes exact rotation time different per address, while preserving periodicity.
2295
0
    const uint64_t time_addr{(static_cast<uint64_t>(count_seconds(current_time)) + hash_addr) / count_seconds(ROTATE_ADDR_RELAY_DEST_INTERVAL)};
2296
0
    const CSipHasher hasher{m_connman.GetDeterministicRandomizer(RANDOMIZER_ID_ADDRESS_RELAY)
2297
0
                                .Write(hash_addr)
2298
0
                                .Write(time_addr)};
2299
2300
    // Relay reachable addresses to 2 peers. Unreachable addresses are relayed randomly to 1 or 2 peers.
2301
0
    unsigned int nRelayNodes = (fReachable || (hasher.Finalize() & 1)) ? 2 : 1;
2302
2303
0
    std::array<std::pair<uint64_t, Peer*>, 2> best{{{0, nullptr}, {0, nullptr}}};
2304
0
    assert(nRelayNodes <= best.size());
2305
2306
0
    LOCK(m_peer_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2307
2308
0
    for (auto& [id, peer] : m_peer_map) {
2309
0
        if (peer->m_addr_relay_enabled && id != originator && IsAddrCompatible(*peer, addr)) {
2310
0
            uint64_t hashKey = CSipHasher(hasher).Write(id).Finalize();
2311
0
            for (unsigned int i = 0; i < nRelayNodes; i++) {
2312
0
                 if (hashKey > best[i].first) {
2313
0
                     std::copy(best.begin() + i, best.begin() + nRelayNodes - 1, best.begin() + i + 1);
2314
0
                     best[i] = std::make_pair(hashKey, peer.get());
2315
0
                     break;
2316
0
                 }
2317
0
            }
2318
0
        }
2319
0
    };
2320
2321
0
    for (unsigned int i = 0; i < nRelayNodes && best[i].first != 0; i++) {
2322
0
        PushAddress(*best[i].second, addr);
2323
0
    }
2324
0
}
2325
2326
void PeerManagerImpl::ProcessGetBlockData(CNode& pfrom, Peer& peer, const CInv& inv)
2327
0
{
2328
0
    std::shared_ptr<const CBlock> a_recent_block;
2329
0
    std::shared_ptr<const CBlockHeaderAndShortTxIDs> a_recent_compact_block;
2330
0
    {
2331
0
        LOCK(m_most_recent_block_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2332
0
        a_recent_block = m_most_recent_block;
2333
0
        a_recent_compact_block = m_most_recent_compact_block;
2334
0
    }
2335
2336
0
    bool need_activate_chain = false;
2337
0
    {
2338
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2339
0
        const CBlockIndex* pindex = m_chainman.m_blockman.LookupBlockIndex(inv.hash);
2340
0
        if (pindex) {
2341
0
            if (pindex->HaveNumChainTxs() && !pindex->IsValid(BLOCK_VALID_SCRIPTS) &&
2342
0
                    pindex->IsValid(BLOCK_VALID_TREE)) {
2343
                // If we have the block and all of its parents, but have not yet validated it,
2344
                // we might be in the middle of connecting it (ie in the unlock of cs_main
2345
                // before ActivateBestChain but after AcceptBlock).
2346
                // In this case, we need to run ActivateBestChain prior to checking the relay
2347
                // conditions below.
2348
0
                need_activate_chain = true;
2349
0
            }
2350
0
        }
2351
0
    } // release cs_main before calling ActivateBestChain
2352
0
    if (need_activate_chain) {
2353
0
        BlockValidationState state;
2354
0
        if (!m_chainman.ActiveChainstate().ActivateBestChain(state, a_recent_block)) {
2355
0
            LogDebug(BCLog::NET, "failed to activate chain (%s)\n", state.ToString());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2356
0
        }
2357
0
    }
2358
2359
0
    const CBlockIndex* pindex{nullptr};
2360
0
    const CBlockIndex* tip{nullptr};
2361
0
    bool can_direct_fetch{false};
2362
0
    FlatFilePos block_pos{};
2363
0
    {
2364
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2365
0
        pindex = m_chainman.m_blockman.LookupBlockIndex(inv.hash);
2366
0
        if (!pindex) {
2367
0
            return;
2368
0
        }
2369
0
        if (!BlockRequestAllowed(*pindex)) {
2370
0
            LogDebug(BCLog::NET, "%s: ignoring request from peer=%i for old block that isn't in the main chain\n", __func__, pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2371
0
            return;
2372
0
        }
2373
        // disconnect node in case we have reached the outbound limit for serving historical blocks
2374
0
        if (m_connman.OutboundTargetReached(true) &&
2375
0
            (((m_chainman.m_best_header != nullptr) && (m_chainman.m_best_header->GetBlockTime() - pindex->GetBlockTime() > HISTORICAL_BLOCK_AGE)) || inv.IsMsgFilteredBlk()) &&
2376
0
            !pfrom.HasPermission(NetPermissionFlags::Download) // nodes with the download permission may exceed target
2377
0
        ) {
2378
0
            LogDebug(BCLog::NET, "historical block serving limit reached, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2379
0
            pfrom.fDisconnect = true;
2380
0
            return;
2381
0
        }
2382
0
        tip = m_chainman.ActiveChain().Tip();
2383
        // Avoid leaking prune-height by never sending blocks below the NODE_NETWORK_LIMITED threshold
2384
0
        if (!pfrom.HasPermission(NetPermissionFlags::NoBan) && (
2385
0
                (((peer.m_our_services & NODE_NETWORK_LIMITED) == NODE_NETWORK_LIMITED) && ((peer.m_our_services & NODE_NETWORK) != NODE_NETWORK) && (tip->nHeight - pindex->nHeight > (int)NODE_NETWORK_LIMITED_MIN_BLOCKS + 2 /* add two blocks buffer extension for possible races */) )
2386
0
           )) {
2387
0
            LogDebug(BCLog::NET, "Ignore block request below NODE_NETWORK_LIMITED threshold, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2388
            //disconnect node and prevent it from stalling (would otherwise wait for the missing block)
2389
0
            pfrom.fDisconnect = true;
2390
0
            return;
2391
0
        }
2392
        // Pruned nodes may have deleted the block, so check whether
2393
        // it's available before trying to send.
2394
0
        if (!(pindex->nStatus & BLOCK_HAVE_DATA)) {
2395
0
            return;
2396
0
        }
2397
0
        can_direct_fetch = CanDirectFetch();
2398
0
        block_pos = pindex->GetBlockPos();
2399
0
    }
2400
2401
0
    std::shared_ptr<const CBlock> pblock;
2402
0
    if (a_recent_block && a_recent_block->GetHash() == inv.hash) {
2403
0
        pblock = a_recent_block;
2404
0
    } else if (inv.IsMsgWitnessBlk()) {
2405
        // Fast-path: in this case it is possible to serve the block directly from disk,
2406
        // as the network format matches the format on disk
2407
0
        if (const auto block_data{m_chainman.m_blockman.ReadRawBlock(block_pos)}) {
2408
0
            MakeAndPushMessage(pfrom, NetMsgType::BLOCK, std::span{*block_data});
2409
0
        } else {
2410
0
            if (WITH_LOCK(m_chainman.GetMutex(), return m_chainman.m_blockman.IsBlockPruned(*pindex))) {
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
2411
0
                LogDebug(BCLog::NET, "Block was pruned before it could be read, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2412
0
            } else {
2413
0
                LogError("Cannot load block from disk, %s", pfrom.DisconnectMsg());
Line
Count
Source
97
0
#define LogError(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Error, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2414
0
            }
2415
0
            pfrom.fDisconnect = true;
2416
0
            return;
2417
0
        }
2418
        // Don't set pblock as we've sent the block
2419
0
    } else {
2420
        // Send block from disk
2421
0
        std::shared_ptr<CBlock> pblockRead = std::make_shared<CBlock>();
2422
0
        if (!m_chainman.m_blockman.ReadBlock(*pblockRead, block_pos, inv.hash)) {
2423
0
            if (WITH_LOCK(m_chainman.GetMutex(), return m_chainman.m_blockman.IsBlockPruned(*pindex))) {
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
2424
0
                LogDebug(BCLog::NET, "Block was pruned before it could be read, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2425
0
            } else {
2426
0
                LogError("Cannot load block from disk, %s", pfrom.DisconnectMsg());
Line
Count
Source
97
0
#define LogError(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Error, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2427
0
            }
2428
0
            pfrom.fDisconnect = true;
2429
0
            return;
2430
0
        }
2431
0
        pblock = pblockRead;
2432
0
    }
2433
0
    if (pblock) {
2434
0
        if (inv.IsMsgBlk()) {
2435
0
            MakeAndPushMessage(pfrom, NetMsgType::BLOCK, TX_NO_WITNESS(*pblock));
2436
0
        } else if (inv.IsMsgWitnessBlk()) {
2437
0
            MakeAndPushMessage(pfrom, NetMsgType::BLOCK, TX_WITH_WITNESS(*pblock));
2438
0
        } else if (inv.IsMsgFilteredBlk()) {
2439
0
            bool sendMerkleBlock = false;
2440
0
            CMerkleBlock merkleBlock;
2441
0
            if (auto tx_relay = peer.GetTxRelay(); tx_relay != nullptr) {
2442
0
                LOCK(tx_relay->m_bloom_filter_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2443
0
                if (tx_relay->m_bloom_filter) {
2444
0
                    sendMerkleBlock = true;
2445
0
                    merkleBlock = CMerkleBlock(*pblock, *tx_relay->m_bloom_filter);
2446
0
                }
2447
0
            }
2448
0
            if (sendMerkleBlock) {
2449
0
                MakeAndPushMessage(pfrom, NetMsgType::MERKLEBLOCK, merkleBlock);
2450
                // CMerkleBlock just contains hashes, so also push any transactions in the block the client did not see
2451
                // This avoids hurting performance by pointlessly requiring a round-trip
2452
                // Note that there is currently no way for a node to request any single transactions we didn't send here -
2453
                // they must either disconnect and retry or request the full block.
2454
                // Thus, the protocol spec specified allows for us to provide duplicate txn here,
2455
                // however we MUST always provide at least what the remote peer needs
2456
0
                for (const auto& [tx_idx, _] : merkleBlock.vMatchedTxn)
2457
0
                    MakeAndPushMessage(pfrom, NetMsgType::TX, TX_NO_WITNESS(*pblock->vtx[tx_idx]));
2458
0
            }
2459
            // else
2460
            // no response
2461
0
        } else if (inv.IsMsgCmpctBlk()) {
2462
            // If a peer is asking for old blocks, we're almost guaranteed
2463
            // they won't have a useful mempool to match against a compact block,
2464
            // and we don't feel like constructing the object for them, so
2465
            // instead we respond with the full, non-compact block.
2466
0
            if (can_direct_fetch && pindex->nHeight >= tip->nHeight - MAX_CMPCTBLOCK_DEPTH) {
2467
0
                if (a_recent_compact_block && a_recent_compact_block->header.GetHash() == inv.hash) {
2468
0
                    MakeAndPushMessage(pfrom, NetMsgType::CMPCTBLOCK, *a_recent_compact_block);
2469
0
                } else {
2470
0
                    CBlockHeaderAndShortTxIDs cmpctblock{*pblock, m_rng.rand64()};
2471
0
                    MakeAndPushMessage(pfrom, NetMsgType::CMPCTBLOCK, cmpctblock);
2472
0
                }
2473
0
            } else {
2474
0
                MakeAndPushMessage(pfrom, NetMsgType::BLOCK, TX_WITH_WITNESS(*pblock));
2475
0
            }
2476
0
        }
2477
0
    }
2478
2479
0
    {
2480
0
        LOCK(peer.m_block_inv_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2481
        // Trigger the peer node to send a getblocks request for the next batch of inventory
2482
0
        if (inv.hash == peer.m_continuation_block) {
2483
            // Send immediately. This must send even if redundant,
2484
            // and we want it right after the last block so they don't
2485
            // wait for other stuff first.
2486
0
            std::vector<CInv> vInv;
2487
0
            vInv.emplace_back(MSG_BLOCK, tip->GetBlockHash());
2488
0
            MakeAndPushMessage(pfrom, NetMsgType::INV, vInv);
2489
0
            peer.m_continuation_block.SetNull();
2490
0
        }
2491
0
    }
2492
0
}
2493
2494
CTransactionRef PeerManagerImpl::FindTxForGetData(const Peer::TxRelay& tx_relay, const GenTxid& gtxid)
2495
0
{
2496
    // If a tx was in the mempool prior to the last INV for this peer, permit the request.
2497
0
    auto txinfo{std::visit(
2498
0
        [&](const auto& id) {
2499
0
            return m_mempool.info_for_relay(id, WITH_LOCK(tx_relay.m_tx_inventory_mutex, return tx_relay.m_last_inv_sequence));
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
            return m_mempool.info_for_relay(id, WITH_LOCK(tx_relay.m_tx_inventory_mutex, return tx_relay.m_last_inv_sequence));
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
2500
0
        },
Unexecuted instantiation: net_processing.cpp:auto (anonymous namespace)::PeerManagerImpl::FindTxForGetData((anonymous namespace)::Peer::TxRelay const&, GenTxid const&)::$_0::operator()<transaction_identifier<false> >(transaction_identifier<false> const&) const
Unexecuted instantiation: net_processing.cpp:auto (anonymous namespace)::PeerManagerImpl::FindTxForGetData((anonymous namespace)::Peer::TxRelay const&, GenTxid const&)::$_0::operator()<transaction_identifier<true> >(transaction_identifier<true> const&) const
2501
0
        gtxid)};
2502
0
    if (txinfo.tx) {
2503
0
        return std::move(txinfo.tx);
2504
0
    }
2505
2506
    // Or it might be from the most recent block
2507
0
    {
2508
0
        LOCK(m_most_recent_block_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2509
0
        if (m_most_recent_block_txs != nullptr) {
2510
0
            auto it = m_most_recent_block_txs->find(gtxid);
2511
0
            if (it != m_most_recent_block_txs->end()) return it->second;
2512
0
        }
2513
0
    }
2514
2515
0
    return {};
2516
0
}
2517
2518
void PeerManagerImpl::ProcessGetData(CNode& pfrom, Peer& peer, const std::atomic<bool>& interruptMsgProc)
2519
0
{
2520
0
    AssertLockNotHeld(cs_main);
Line
Count
Source
147
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
2521
2522
0
    auto tx_relay = peer.GetTxRelay();
2523
2524
0
    std::deque<CInv>::iterator it = peer.m_getdata_requests.begin();
2525
0
    std::vector<CInv> vNotFound;
2526
2527
    // Process as many TX items from the front of the getdata queue as
2528
    // possible, since they're common and it's efficient to batch process
2529
    // them.
2530
0
    while (it != peer.m_getdata_requests.end() && it->IsGenTxMsg()) {
2531
0
        if (interruptMsgProc) return;
2532
        // The send buffer provides backpressure. If there's no space in
2533
        // the buffer, pause processing until the next call.
2534
0
        if (pfrom.fPauseSend) break;
2535
2536
0
        const CInv &inv = *it++;
2537
2538
0
        if (tx_relay == nullptr) {
2539
            // Ignore GETDATA requests for transactions from block-relay-only
2540
            // peers and peers that asked us not to announce transactions.
2541
0
            continue;
2542
0
        }
2543
2544
0
        if (auto tx{FindTxForGetData(*tx_relay, ToGenTxid(inv))}) {
2545
            // WTX and WITNESS_TX imply we serialize with witness
2546
0
            const auto maybe_with_witness = (inv.IsMsgTx() ? TX_NO_WITNESS : TX_WITH_WITNESS);
2547
0
            MakeAndPushMessage(pfrom, NetMsgType::TX, maybe_with_witness(*tx));
2548
0
            m_mempool.RemoveUnbroadcastTx(tx->GetHash());
2549
0
        } else {
2550
0
            vNotFound.push_back(inv);
2551
0
        }
2552
0
    }
2553
2554
    // Only process one BLOCK item per call, since they're uncommon and can be
2555
    // expensive to process.
2556
0
    if (it != peer.m_getdata_requests.end() && !pfrom.fPauseSend) {
2557
0
        const CInv &inv = *it++;
2558
0
        if (inv.IsGenBlkMsg()) {
2559
0
            ProcessGetBlockData(pfrom, peer, inv);
2560
0
        }
2561
        // else: If the first item on the queue is an unknown type, we erase it
2562
        // and continue processing the queue on the next call.
2563
        // NOTE: previously we wouldn't do so and the peer sending us a malformed GETDATA could
2564
        // result in never making progress and this thread using 100% allocated CPU. See
2565
        // https://bitcoincore.org/en/2024/07/03/disclose-getdata-cpu.
2566
0
    }
2567
2568
0
    peer.m_getdata_requests.erase(peer.m_getdata_requests.begin(), it);
2569
2570
0
    if (!vNotFound.empty()) {
2571
        // Let the peer know that we didn't find what it asked for, so it doesn't
2572
        // have to wait around forever.
2573
        // SPV clients care about this message: it's needed when they are
2574
        // recursively walking the dependencies of relevant unconfirmed
2575
        // transactions. SPV clients want to do that because they want to know
2576
        // about (and store and rebroadcast and risk analyze) the dependencies
2577
        // of transactions relevant to them, without having to download the
2578
        // entire memory pool.
2579
        // Also, other nodes can use these messages to automatically request a
2580
        // transaction from some other peer that announced it, and stop
2581
        // waiting for us to respond.
2582
        // In normal operation, we often send NOTFOUND messages for parents of
2583
        // transactions that we relay; if a peer is missing a parent, they may
2584
        // assume we have them and request the parents from us.
2585
0
        MakeAndPushMessage(pfrom, NetMsgType::NOTFOUND, vNotFound);
2586
0
    }
2587
0
}
2588
2589
uint32_t PeerManagerImpl::GetFetchFlags(const Peer& peer) const
2590
0
{
2591
0
    uint32_t nFetchFlags = 0;
2592
0
    if (CanServeWitnesses(peer)) {
2593
0
        nFetchFlags |= MSG_WITNESS_FLAG;
2594
0
    }
2595
0
    return nFetchFlags;
2596
0
}
2597
2598
void PeerManagerImpl::SendBlockTransactions(CNode& pfrom, Peer& peer, const CBlock& block, const BlockTransactionsRequest& req)
2599
0
{
2600
0
    BlockTransactions resp(req);
2601
0
    for (size_t i = 0; i < req.indexes.size(); i++) {
2602
0
        if (req.indexes[i] >= block.vtx.size()) {
2603
0
            Misbehaving(peer, "getblocktxn with out-of-bounds tx indices");
2604
0
            return;
2605
0
        }
2606
0
        resp.txn[i] = block.vtx[req.indexes[i]];
2607
0
    }
2608
2609
0
    if (LogAcceptCategory(BCLog::CMPCTBLOCK, BCLog::Level::Debug)) {
2610
0
        uint32_t tx_requested_size{0};
2611
0
        for (const auto& tx : resp.txn) tx_requested_size += tx->ComputeTotalSize();
2612
0
        LogDebug(BCLog::CMPCTBLOCK, "Peer %d sent us a GETBLOCKTXN for block %s, sending a BLOCKTXN with %u txns. (%u bytes)\n", pfrom.GetId(), block.GetHash().ToString(), resp.txn.size(), tx_requested_size);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2613
0
    }
2614
0
    MakeAndPushMessage(pfrom, NetMsgType::BLOCKTXN, resp);
2615
0
}
2616
2617
bool PeerManagerImpl::CheckHeadersPoW(const std::vector<CBlockHeader>& headers, Peer& peer)
2618
0
{
2619
    // Do these headers have proof-of-work matching what's claimed?
2620
0
    if (!HasValidProofOfWork(headers, m_chainparams.GetConsensus())) {
2621
0
        Misbehaving(peer, "header with invalid proof of work");
2622
0
        return false;
2623
0
    }
2624
2625
    // Are these headers connected to each other?
2626
0
    if (!CheckHeadersAreContinuous(headers)) {
2627
0
        Misbehaving(peer, "non-continuous headers sequence");
2628
0
        return false;
2629
0
    }
2630
0
    return true;
2631
0
}
2632
2633
arith_uint256 PeerManagerImpl::GetAntiDoSWorkThreshold()
2634
0
{
2635
0
    arith_uint256 near_chaintip_work = 0;
2636
0
    LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2637
0
    if (m_chainman.ActiveChain().Tip() != nullptr) {
2638
0
        const CBlockIndex *tip = m_chainman.ActiveChain().Tip();
2639
        // Use a 144 block buffer, so that we'll accept headers that fork from
2640
        // near our tip.
2641
0
        near_chaintip_work = tip->nChainWork - std::min<arith_uint256>(144*GetBlockProof(*tip), tip->nChainWork);
2642
0
    }
2643
0
    return std::max(near_chaintip_work, m_chainman.MinimumChainWork());
2644
0
}
2645
2646
/**
2647
 * Special handling for unconnecting headers that might be part of a block
2648
 * announcement.
2649
 *
2650
 * We'll send a getheaders message in response to try to connect the chain.
2651
 */
2652
void PeerManagerImpl::HandleUnconnectingHeaders(CNode& pfrom, Peer& peer,
2653
        const std::vector<CBlockHeader>& headers)
2654
0
{
2655
    // Try to fill in the missing headers.
2656
0
    const CBlockIndex* best_header{WITH_LOCK(cs_main, return m_chainman.m_best_header)};
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
2657
0
    if (MaybeSendGetHeaders(pfrom, GetLocator(best_header), peer)) {
2658
0
        LogDebug(BCLog::NET, "received header %s: missing prev block %s, sending getheaders (%d) to end (peer=%d)\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2659
0
            headers[0].GetHash().ToString(),
2660
0
            headers[0].hashPrevBlock.ToString(),
2661
0
            best_header->nHeight,
2662
0
            pfrom.GetId());
2663
0
    }
2664
2665
    // Set hashLastUnknownBlock for this peer, so that if we
2666
    // eventually get the headers - even from a different peer -
2667
    // we can use this peer to download.
2668
0
    WITH_LOCK(cs_main, UpdateBlockAvailability(pfrom.GetId(), headers.back().GetHash()));
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
2669
0
}
2670
2671
bool PeerManagerImpl::CheckHeadersAreContinuous(const std::vector<CBlockHeader>& headers) const
2672
0
{
2673
0
    uint256 hashLastBlock;
2674
0
    for (const CBlockHeader& header : headers) {
2675
0
        if (!hashLastBlock.IsNull() && header.hashPrevBlock != hashLastBlock) {
2676
0
            return false;
2677
0
        }
2678
0
        hashLastBlock = header.GetHash();
2679
0
    }
2680
0
    return true;
2681
0
}
2682
2683
bool PeerManagerImpl::IsContinuationOfLowWorkHeadersSync(Peer& peer, CNode& pfrom, std::vector<CBlockHeader>& headers)
2684
0
{
2685
0
    if (peer.m_headers_sync) {
2686
0
        auto result = peer.m_headers_sync->ProcessNextHeaders(headers, headers.size() == m_opts.max_headers_result);
2687
        // If it is a valid continuation, we should treat the existing getheaders request as responded to.
2688
0
        if (result.success) peer.m_last_getheaders_timestamp = {};
2689
0
        if (result.request_more) {
2690
0
            auto locator = peer.m_headers_sync->NextHeadersRequestLocator();
2691
            // If we were instructed to ask for a locator, it should not be empty.
2692
0
            Assume(!locator.vHave.empty());
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
2693
            // We can only be instructed to request more if processing was successful.
2694
0
            Assume(result.success);
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
2695
0
            if (!locator.vHave.empty()) {
2696
                // It should be impossible for the getheaders request to fail,
2697
                // because we just cleared the last getheaders timestamp.
2698
0
                bool sent_getheaders = MaybeSendGetHeaders(pfrom, locator, peer);
2699
0
                Assume(sent_getheaders);
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
2700
0
                LogDebug(BCLog::NET, "more getheaders (from %s) to peer=%d\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2701
0
                    locator.vHave.front().ToString(), pfrom.GetId());
2702
0
            }
2703
0
        }
2704
2705
0
        if (peer.m_headers_sync->GetState() == HeadersSyncState::State::FINAL) {
2706
0
            peer.m_headers_sync.reset(nullptr);
2707
2708
            // Delete this peer's entry in m_headers_presync_stats.
2709
            // If this is m_headers_presync_bestpeer, it will be replaced later
2710
            // by the next peer that triggers the else{} branch below.
2711
0
            LOCK(m_headers_presync_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2712
0
            m_headers_presync_stats.erase(pfrom.GetId());
2713
0
        } else {
2714
            // Build statistics for this peer's sync.
2715
0
            HeadersPresyncStats stats;
2716
0
            stats.first = peer.m_headers_sync->GetPresyncWork();
2717
0
            if (peer.m_headers_sync->GetState() == HeadersSyncState::State::PRESYNC) {
2718
0
                stats.second = {peer.m_headers_sync->GetPresyncHeight(),
2719
0
                                peer.m_headers_sync->GetPresyncTime()};
2720
0
            }
2721
2722
            // Update statistics in stats.
2723
0
            LOCK(m_headers_presync_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2724
0
            m_headers_presync_stats[pfrom.GetId()] = stats;
2725
0
            auto best_it = m_headers_presync_stats.find(m_headers_presync_bestpeer);
2726
0
            bool best_updated = false;
2727
0
            if (best_it == m_headers_presync_stats.end()) {
2728
                // If the cached best peer is outdated, iterate over all remaining ones (including
2729
                // newly updated one) to find the best one.
2730
0
                NodeId peer_best{-1};
2731
0
                const HeadersPresyncStats* stat_best{nullptr};
2732
0
                for (const auto& [peer, stat] : m_headers_presync_stats) {
2733
0
                    if (!stat_best || stat > *stat_best) {
2734
0
                        peer_best = peer;
2735
0
                        stat_best = &stat;
2736
0
                    }
2737
0
                }
2738
0
                m_headers_presync_bestpeer = peer_best;
2739
0
                best_updated = (peer_best == pfrom.GetId());
2740
0
            } else if (best_it->first == pfrom.GetId() || stats > best_it->second) {
2741
                // pfrom was and remains the best peer, or pfrom just became best.
2742
0
                m_headers_presync_bestpeer = pfrom.GetId();
2743
0
                best_updated = true;
2744
0
            }
2745
0
            if (best_updated && stats.second.has_value()) {
2746
                // If the best peer updated, and it is in its first phase, signal.
2747
0
                m_headers_presync_should_signal = true;
2748
0
            }
2749
0
        }
2750
2751
0
        if (result.success) {
2752
            // We only overwrite the headers passed in if processing was
2753
            // successful.
2754
0
            headers.swap(result.pow_validated_headers);
2755
0
        }
2756
2757
0
        return result.success;
2758
0
    }
2759
    // Either we didn't have a sync in progress, or something went wrong
2760
    // processing these headers, or we are returning headers to the caller to
2761
    // process.
2762
0
    return false;
2763
0
}
2764
2765
bool PeerManagerImpl::TryLowWorkHeadersSync(Peer& peer, CNode& pfrom, const CBlockIndex& chain_start_header, std::vector<CBlockHeader>& headers)
2766
0
{
2767
    // Calculate the claimed total work on this chain.
2768
0
    arith_uint256 total_work = chain_start_header.nChainWork + CalculateClaimedHeadersWork(headers);
2769
2770
    // Our dynamic anti-DoS threshold (minimum work required on a headers chain
2771
    // before we'll store it)
2772
0
    arith_uint256 minimum_chain_work = GetAntiDoSWorkThreshold();
2773
2774
    // Avoid DoS via low-difficulty-headers by only processing if the headers
2775
    // are part of a chain with sufficient work.
2776
0
    if (total_work < minimum_chain_work) {
2777
        // Only try to sync with this peer if their headers message was full;
2778
        // otherwise they don't have more headers after this so no point in
2779
        // trying to sync their too-little-work chain.
2780
0
        if (headers.size() == m_opts.max_headers_result) {
2781
            // Note: we could advance to the last header in this set that is
2782
            // known to us, rather than starting at the first header (which we
2783
            // may already have); however this is unlikely to matter much since
2784
            // ProcessHeadersMessage() already handles the case where all
2785
            // headers in a received message are already known and are
2786
            // ancestors of m_best_header or chainActive.Tip(), by skipping
2787
            // this logic in that case. So even if the first header in this set
2788
            // of headers is known, some header in this set must be new, so
2789
            // advancing to the first unknown header would be a small effect.
2790
0
            LOCK(peer.m_headers_sync_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2791
0
            peer.m_headers_sync.reset(new HeadersSyncState(peer.m_id, m_chainparams.GetConsensus(),
2792
0
                m_chainparams.HeadersSync(), chain_start_header, minimum_chain_work));
2793
2794
            // Now a HeadersSyncState object for tracking this synchronization
2795
            // is created, process the headers using it as normal. Failures are
2796
            // handled inside of IsContinuationOfLowWorkHeadersSync.
2797
0
            (void)IsContinuationOfLowWorkHeadersSync(peer, pfrom, headers);
2798
0
        } else {
2799
0
            LogDebug(BCLog::NET, "Ignoring low-work chain (height=%u) from peer=%d\n", chain_start_header.nHeight + headers.size(), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2800
0
        }
2801
2802
        // The peer has not yet given us a chain that meets our work threshold,
2803
        // so we want to prevent further processing of the headers in any case.
2804
0
        headers = {};
2805
0
        return true;
2806
0
    }
2807
2808
0
    return false;
2809
0
}
2810
2811
bool PeerManagerImpl::IsAncestorOfBestHeaderOrTip(const CBlockIndex* header)
2812
0
{
2813
0
    if (header == nullptr) {
2814
0
        return false;
2815
0
    } else if (m_chainman.m_best_header != nullptr && header == m_chainman.m_best_header->GetAncestor(header->nHeight)) {
2816
0
        return true;
2817
0
    } else if (m_chainman.ActiveChain().Contains(header)) {
2818
0
        return true;
2819
0
    }
2820
0
    return false;
2821
0
}
2822
2823
bool PeerManagerImpl::MaybeSendGetHeaders(CNode& pfrom, const CBlockLocator& locator, Peer& peer)
2824
0
{
2825
0
    const auto current_time = NodeClock::now();
2826
2827
    // Only allow a new getheaders message to go out if we don't have a recent
2828
    // one already in-flight
2829
0
    if (current_time - peer.m_last_getheaders_timestamp > HEADERS_RESPONSE_TIME) {
2830
0
        MakeAndPushMessage(pfrom, NetMsgType::GETHEADERS, locator, uint256());
2831
0
        peer.m_last_getheaders_timestamp = current_time;
2832
0
        return true;
2833
0
    }
2834
0
    return false;
2835
0
}
2836
2837
/*
2838
 * Given a new headers tip ending in last_header, potentially request blocks towards that tip.
2839
 * We require that the given tip have at least as much work as our tip, and for
2840
 * our current tip to be "close to synced" (see CanDirectFetch()).
2841
 */
2842
void PeerManagerImpl::HeadersDirectFetchBlocks(CNode& pfrom, const Peer& peer, const CBlockIndex& last_header)
2843
0
{
2844
0
    LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2845
0
    CNodeState *nodestate = State(pfrom.GetId());
2846
2847
0
    if (CanDirectFetch() && last_header.IsValid(BLOCK_VALID_TREE) && m_chainman.ActiveChain().Tip()->nChainWork <= last_header.nChainWork) {
2848
0
        std::vector<const CBlockIndex*> vToFetch;
2849
0
        const CBlockIndex* pindexWalk{&last_header};
2850
        // Calculate all the blocks we'd need to switch to last_header, up to a limit.
2851
0
        while (pindexWalk && !m_chainman.ActiveChain().Contains(pindexWalk) && vToFetch.size() <= MAX_BLOCKS_IN_TRANSIT_PER_PEER) {
2852
0
            if (!(pindexWalk->nStatus & BLOCK_HAVE_DATA) &&
2853
0
                    !IsBlockRequested(pindexWalk->GetBlockHash()) &&
2854
0
                    (!DeploymentActiveAt(*pindexWalk, m_chainman, Consensus::DEPLOYMENT_SEGWIT) || CanServeWitnesses(peer))) {
2855
                // We don't have this block, and it's not yet in flight.
2856
0
                vToFetch.push_back(pindexWalk);
2857
0
            }
2858
0
            pindexWalk = pindexWalk->pprev;
2859
0
        }
2860
        // If pindexWalk still isn't on our main chain, we're looking at a
2861
        // very large reorg at a time we think we're close to caught up to
2862
        // the main chain -- this shouldn't really happen.  Bail out on the
2863
        // direct fetch and rely on parallel download instead.
2864
0
        if (!m_chainman.ActiveChain().Contains(pindexWalk)) {
2865
0
            LogDebug(BCLog::NET, "Large reorg, won't direct fetch to %s (%d)\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2866
0
                     last_header.GetBlockHash().ToString(),
2867
0
                     last_header.nHeight);
2868
0
        } else {
2869
0
            std::vector<CInv> vGetData;
2870
            // Download as much as possible, from earliest to latest.
2871
0
            for (const CBlockIndex* pindex : vToFetch | std::views::reverse) {
2872
0
                if (nodestate->vBlocksInFlight.size() >= MAX_BLOCKS_IN_TRANSIT_PER_PEER) {
2873
                    // Can't download any more from this peer
2874
0
                    break;
2875
0
                }
2876
0
                uint32_t nFetchFlags = GetFetchFlags(peer);
2877
0
                vGetData.emplace_back(MSG_BLOCK | nFetchFlags, pindex->GetBlockHash());
2878
0
                BlockRequested(pfrom.GetId(), *pindex);
2879
0
                LogDebug(BCLog::NET, "Requesting block %s from peer=%d",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2880
0
                         pindex->GetBlockHash().ToString(), pfrom.GetId());
2881
0
            }
2882
0
            if (vGetData.size() > 1) {
2883
0
                LogDebug(BCLog::NET, "Downloading blocks toward %s (%d) via headers direct fetch\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2884
0
                         last_header.GetBlockHash().ToString(),
2885
0
                         last_header.nHeight);
2886
0
            }
2887
0
            if (vGetData.size() > 0) {
2888
0
                if (!m_opts.ignore_incoming_txs &&
2889
0
                        nodestate->m_provides_cmpctblocks &&
2890
0
                        vGetData.size() == 1 &&
2891
0
                        mapBlocksInFlight.size() == 1 &&
2892
0
                        last_header.pprev->IsValid(BLOCK_VALID_CHAIN)) {
2893
                    // In any case, we want to download using a compact block, not a regular one
2894
0
                    vGetData[0] = CInv(MSG_CMPCT_BLOCK, vGetData[0].hash);
2895
0
                }
2896
0
                MakeAndPushMessage(pfrom, NetMsgType::GETDATA, vGetData);
2897
0
            }
2898
0
        }
2899
0
    }
2900
0
}
2901
2902
/**
2903
 * Given receipt of headers from a peer ending in last_header, along with
2904
 * whether that header was new and whether the headers message was full,
2905
 * update the state we keep for the peer.
2906
 */
2907
void PeerManagerImpl::UpdatePeerStateForReceivedHeaders(CNode& pfrom, Peer& peer,
2908
        const CBlockIndex& last_header, bool received_new_header, bool may_have_more_headers)
2909
0
{
2910
0
    LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2911
0
    CNodeState *nodestate = State(pfrom.GetId());
2912
2913
0
    UpdateBlockAvailability(pfrom.GetId(), last_header.GetBlockHash());
2914
2915
    // From here, pindexBestKnownBlock should be guaranteed to be non-null,
2916
    // because it is set in UpdateBlockAvailability. Some nullptr checks
2917
    // are still present, however, as belt-and-suspenders.
2918
2919
0
    if (received_new_header && last_header.nChainWork > m_chainman.ActiveChain().Tip()->nChainWork) {
2920
0
        nodestate->m_last_block_announcement = GetTime();
2921
0
    }
2922
2923
    // If we're in IBD, we want outbound peers that will serve us a useful
2924
    // chain. Disconnect peers that are on chains with insufficient work.
2925
0
    if (m_chainman.IsInitialBlockDownload() && !may_have_more_headers) {
2926
        // If the peer has no more headers to give us, then we know we have
2927
        // their tip.
2928
0
        if (nodestate->pindexBestKnownBlock && nodestate->pindexBestKnownBlock->nChainWork < m_chainman.MinimumChainWork()) {
2929
            // This peer has too little work on their headers chain to help
2930
            // us sync -- disconnect if it is an outbound disconnection
2931
            // candidate.
2932
            // Note: We compare their tip to the minimum chain work (rather than
2933
            // m_chainman.ActiveChain().Tip()) because we won't start block download
2934
            // until we have a headers chain that has at least
2935
            // the minimum chain work, even if a peer has a chain past our tip,
2936
            // as an anti-DoS measure.
2937
0
            if (pfrom.IsOutboundOrBlockRelayConn()) {
2938
0
                LogInfo("outbound peer headers chain has insufficient work, %s", pfrom.DisconnectMsg());
Line
Count
Source
95
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2939
0
                pfrom.fDisconnect = true;
2940
0
            }
2941
0
        }
2942
0
    }
2943
2944
    // If this is an outbound full-relay peer, check to see if we should protect
2945
    // it from the bad/lagging chain logic.
2946
    // Note that outbound block-relay peers are excluded from this protection, and
2947
    // thus always subject to eviction under the bad/lagging chain logic.
2948
    // See ChainSyncTimeoutState.
2949
0
    if (!pfrom.fDisconnect && pfrom.IsFullOutboundConn() && nodestate->pindexBestKnownBlock != nullptr) {
2950
0
        if (m_outbound_peers_with_protect_from_disconnect < MAX_OUTBOUND_PEERS_TO_PROTECT_FROM_DISCONNECT && nodestate->pindexBestKnownBlock->nChainWork >= m_chainman.ActiveChain().Tip()->nChainWork && !nodestate->m_chain_sync.m_protect) {
2951
0
            LogDebug(BCLog::NET, "Protecting outbound peer=%d from eviction\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
2952
0
            nodestate->m_chain_sync.m_protect = true;
2953
0
            ++m_outbound_peers_with_protect_from_disconnect;
2954
0
        }
2955
0
    }
2956
0
}
2957
2958
void PeerManagerImpl::ProcessHeadersMessage(CNode& pfrom, Peer& peer,
2959
                                            std::vector<CBlockHeader>&& headers,
2960
                                            bool via_compact_block)
2961
0
{
2962
0
    size_t nCount = headers.size();
2963
2964
0
    if (nCount == 0) {
2965
        // Nothing interesting. Stop asking this peers for more headers.
2966
        // If we were in the middle of headers sync, receiving an empty headers
2967
        // message suggests that the peer suddenly has nothing to give us
2968
        // (perhaps it reorged to our chain). Clear download state for this peer.
2969
0
        LOCK(peer.m_headers_sync_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2970
0
        if (peer.m_headers_sync) {
2971
0
            peer.m_headers_sync.reset(nullptr);
2972
0
            LOCK(m_headers_presync_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
2973
0
            m_headers_presync_stats.erase(pfrom.GetId());
2974
0
        }
2975
        // A headers message with no headers cannot be an announcement, so assume
2976
        // it is a response to our last getheaders request, if there is one.
2977
0
        peer.m_last_getheaders_timestamp = {};
2978
0
        return;
2979
0
    }
2980
2981
    // Before we do any processing, make sure these pass basic sanity checks.
2982
    // We'll rely on headers having valid proof-of-work further down, as an
2983
    // anti-DoS criteria (note: this check is required before passing any
2984
    // headers into HeadersSyncState).
2985
0
    if (!CheckHeadersPoW(headers, peer)) {
2986
        // Misbehaving() calls are handled within CheckHeadersPoW(), so we can
2987
        // just return. (Note that even if a header is announced via compact
2988
        // block, the header itself should be valid, so this type of error can
2989
        // always be punished.)
2990
0
        return;
2991
0
    }
2992
2993
0
    const CBlockIndex *pindexLast = nullptr;
2994
2995
    // We'll set already_validated_work to true if these headers are
2996
    // successfully processed as part of a low-work headers sync in progress
2997
    // (either in PRESYNC or REDOWNLOAD phase).
2998
    // If true, this will mean that any headers returned to us (ie during
2999
    // REDOWNLOAD) can be validated without further anti-DoS checks.
3000
0
    bool already_validated_work = false;
3001
3002
    // If we're in the middle of headers sync, let it do its magic.
3003
0
    bool have_headers_sync = false;
3004
0
    {
3005
0
        LOCK(peer.m_headers_sync_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
3006
3007
0
        already_validated_work = IsContinuationOfLowWorkHeadersSync(peer, pfrom, headers);
3008
3009
        // The headers we passed in may have been:
3010
        // - untouched, perhaps if no headers-sync was in progress, or some
3011
        //   failure occurred
3012
        // - erased, such as if the headers were successfully processed and no
3013
        //   additional headers processing needs to take place (such as if we
3014
        //   are still in PRESYNC)
3015
        // - replaced with headers that are now ready for validation, such as
3016
        //   during the REDOWNLOAD phase of a low-work headers sync.
3017
        // So just check whether we still have headers that we need to process,
3018
        // or not.
3019
0
        if (headers.empty()) {
3020
0
            return;
3021
0
        }
3022
3023
0
        have_headers_sync = !!peer.m_headers_sync;
3024
0
    }
3025
3026
    // Do these headers connect to something in our block index?
3027
0
    const CBlockIndex *chain_start_header{WITH_LOCK(::cs_main, return m_chainman.m_blockman.LookupBlockIndex(headers[0].hashPrevBlock))};
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
3028
0
    bool headers_connect_blockindex{chain_start_header != nullptr};
3029
3030
0
    if (!headers_connect_blockindex) {
3031
        // This could be a BIP 130 block announcement, use
3032
        // special logic for handling headers that don't connect, as this
3033
        // could be benign.
3034
0
        HandleUnconnectingHeaders(pfrom, peer, headers);
3035
0
        return;
3036
0
    }
3037
3038
    // If headers connect, assume that this is in response to any outstanding getheaders
3039
    // request we may have sent, and clear out the time of our last request. Non-connecting
3040
    // headers cannot be a response to a getheaders request.
3041
0
    peer.m_last_getheaders_timestamp = {};
3042
3043
    // If the headers we received are already in memory and an ancestor of
3044
    // m_best_header or our tip, skip anti-DoS checks. These headers will not
3045
    // use any more memory (and we are not leaking information that could be
3046
    // used to fingerprint us).
3047
0
    const CBlockIndex *last_received_header{nullptr};
3048
0
    {
3049
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
3050
0
        last_received_header = m_chainman.m_blockman.LookupBlockIndex(headers.back().GetHash());
3051
0
        already_validated_work = already_validated_work || IsAncestorOfBestHeaderOrTip(last_received_header);
3052
0
    }
3053
3054
    // If our peer has NetPermissionFlags::NoBan privileges, then bypass our
3055
    // anti-DoS logic (this saves bandwidth when we connect to a trusted peer
3056
    // on startup).
3057
0
    if (pfrom.HasPermission(NetPermissionFlags::NoBan)) {
3058
0
        already_validated_work = true;
3059
0
    }
3060
3061
    // At this point, the headers connect to something in our block index.
3062
    // Do anti-DoS checks to determine if we should process or store for later
3063
    // processing.
3064
0
    if (!already_validated_work && TryLowWorkHeadersSync(peer, pfrom,
3065
0
                                                         *chain_start_header, headers)) {
3066
        // If we successfully started a low-work headers sync, then there
3067
        // should be no headers to process any further.
3068
0
        Assume(headers.empty());
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
3069
0
        return;
3070
0
    }
3071
3072
    // At this point, we have a set of headers with sufficient work on them
3073
    // which can be processed.
3074
3075
    // If we don't have the last header, then this peer will have given us
3076
    // something new (if these headers are valid).
3077
0
    bool received_new_header{last_received_header == nullptr};
3078
3079
    // Now process all the headers.
3080
0
    BlockValidationState state;
3081
0
    const bool processed{m_chainman.ProcessNewBlockHeaders(headers,
3082
0
                                                           /*min_pow_checked=*/true,
3083
0
                                                           state, &pindexLast)};
3084
0
    if (!processed) {
3085
0
        if (state.IsInvalid()) {
3086
0
            if (!pfrom.IsInboundConn() && state.GetResult() == BlockValidationResult::BLOCK_CACHED_INVALID) {
3087
                // Warn user if outgoing peers send us headers of blocks that we previously marked as invalid.
3088
0
                LogWarning("%s (received from peer=%i). "
Line
Count
Source
96
0
#define LogWarning(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Warning, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3089
0
                           "If this happens with all peers, consider database corruption (that -reindex may fix) "
3090
0
                           "or a potential consensus incompatibility.",
3091
0
                           state.GetDebugMessage(), pfrom.GetId());
3092
0
            }
3093
0
            MaybePunishNodeForBlock(pfrom.GetId(), state, via_compact_block, "invalid header received");
3094
0
            return;
3095
0
        }
3096
0
    }
3097
0
    assert(pindexLast);
3098
3099
0
    if (processed && received_new_header) {
3100
0
        LogBlockHeader(*pindexLast, pfrom, /*via_compact_block=*/false);
3101
0
    }
3102
3103
    // Consider fetching more headers if we are not using our headers-sync mechanism.
3104
0
    if (nCount == m_opts.max_headers_result && !have_headers_sync) {
3105
        // Headers message had its maximum size; the peer may have more headers.
3106
0
        if (MaybeSendGetHeaders(pfrom, GetLocator(pindexLast), peer)) {
3107
0
            LogDebug(BCLog::NET, "more getheaders (%d) to end to peer=%d", pindexLast->nHeight, pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3108
0
        }
3109
0
    }
3110
3111
0
    UpdatePeerStateForReceivedHeaders(pfrom, peer, *pindexLast, received_new_header, nCount == m_opts.max_headers_result);
3112
3113
    // Consider immediately downloading blocks.
3114
0
    HeadersDirectFetchBlocks(pfrom, peer, *pindexLast);
3115
3116
0
    return;
3117
0
}
3118
3119
std::optional<node::PackageToValidate> PeerManagerImpl::ProcessInvalidTx(NodeId nodeid, const CTransactionRef& ptx, const TxValidationState& state,
3120
                                       bool first_time_failure)
3121
0
{
3122
0
    AssertLockNotHeld(m_peer_mutex);
Line
Count
Source
147
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3123
0
    AssertLockHeld(g_msgproc_mutex);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
3124
0
    AssertLockHeld(m_tx_download_mutex);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
3125
3126
0
    PeerRef peer{GetPeerRef(nodeid)};
3127
3128
0
    LogDebug(BCLog::MEMPOOLREJ, "%s (wtxid=%s) from peer=%d was not accepted: %s\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3129
0
        ptx->GetHash().ToString(),
3130
0
        ptx->GetWitnessHash().ToString(),
3131
0
        nodeid,
3132
0
        state.ToString());
3133
3134
0
    const auto& [add_extra_compact_tx, unique_parents, package_to_validate] = m_txdownloadman.MempoolRejectedTx(ptx, state, nodeid, first_time_failure);
3135
3136
0
    if (add_extra_compact_tx && RecursiveDynamicUsage(*ptx) < 100000) {
3137
0
        AddToCompactExtraTransactions(ptx);
3138
0
    }
3139
0
    for (const Txid& parent_txid : unique_parents) {
3140
0
        if (peer) AddKnownTx(*peer, parent_txid.ToUint256());
3141
0
    }
3142
3143
0
    return package_to_validate;
3144
0
}
3145
3146
void PeerManagerImpl::ProcessValidTx(NodeId nodeid, const CTransactionRef& tx, const std::list<CTransactionRef>& replaced_transactions)
3147
0
{
3148
0
    AssertLockNotHeld(m_peer_mutex);
Line
Count
Source
147
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3149
0
    AssertLockHeld(g_msgproc_mutex);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
3150
0
    AssertLockHeld(m_tx_download_mutex);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
3151
3152
0
    m_txdownloadman.MempoolAcceptedTx(tx);
3153
3154
0
    LogDebug(BCLog::MEMPOOL, "AcceptToMemoryPool: peer=%d: accepted %s (wtxid=%s) (poolsz %u txn, %u kB)\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3155
0
             nodeid,
3156
0
             tx->GetHash().ToString(),
3157
0
             tx->GetWitnessHash().ToString(),
3158
0
             m_mempool.size(), m_mempool.DynamicMemoryUsage() / 1000);
3159
3160
0
    InitiateTxBroadcastToAll(tx->GetHash(), tx->GetWitnessHash());
3161
3162
0
    for (const CTransactionRef& removedTx : replaced_transactions) {
3163
0
        AddToCompactExtraTransactions(removedTx);
3164
0
    }
3165
0
}
3166
3167
void PeerManagerImpl::ProcessPackageResult(const node::PackageToValidate& package_to_validate, const PackageMempoolAcceptResult& package_result)
3168
0
{
3169
0
    AssertLockNotHeld(m_peer_mutex);
Line
Count
Source
147
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3170
0
    AssertLockHeld(g_msgproc_mutex);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
3171
0
    AssertLockHeld(m_tx_download_mutex);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
3172
3173
0
    const auto& package = package_to_validate.m_txns;
3174
0
    const auto& senders = package_to_validate.m_senders;
3175
3176
0
    if (package_result.m_state.IsInvalid()) {
3177
0
        m_txdownloadman.MempoolRejectedPackage(package);
3178
0
    }
3179
    // We currently only expect to process 1-parent-1-child packages. Remove if this changes.
3180
0
    if (!Assume(package.size() == 2)) return;
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
3181
3182
    // Iterate backwards to erase in-package descendants from the orphanage before they become
3183
    // relevant in AddChildrenToWorkSet.
3184
0
    auto package_iter = package.rbegin();
3185
0
    auto senders_iter = senders.rbegin();
3186
0
    while (package_iter != package.rend()) {
3187
0
        const auto& tx = *package_iter;
3188
0
        const NodeId nodeid = *senders_iter;
3189
0
        const auto it_result{package_result.m_tx_results.find(tx->GetWitnessHash())};
3190
3191
        // It is not guaranteed that a result exists for every transaction.
3192
0
        if (it_result != package_result.m_tx_results.end()) {
3193
0
            const auto& tx_result = it_result->second;
3194
0
            switch (tx_result.m_result_type) {
3195
0
                case MempoolAcceptResult::ResultType::VALID:
3196
0
                {
3197
0
                    ProcessValidTx(nodeid, tx, tx_result.m_replaced_transactions);
3198
0
                    break;
3199
0
                }
3200
0
                case MempoolAcceptResult::ResultType::INVALID:
3201
0
                case MempoolAcceptResult::ResultType::DIFFERENT_WITNESS:
3202
0
                {
3203
                    // Don't add to vExtraTxnForCompact, as these transactions should have already been
3204
                    // added there when added to the orphanage or rejected for TX_RECONSIDERABLE.
3205
                    // This should be updated if package submission is ever used for transactions
3206
                    // that haven't already been validated before.
3207
0
                    ProcessInvalidTx(nodeid, tx, tx_result.m_state, /*first_time_failure=*/false);
3208
0
                    break;
3209
0
                }
3210
0
                case MempoolAcceptResult::ResultType::MEMPOOL_ENTRY:
3211
0
                {
3212
                    // AlreadyHaveTx() should be catching transactions that are already in mempool.
3213
0
                    Assume(false);
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
3214
0
                    break;
3215
0
                }
3216
0
            }
3217
0
        }
3218
0
        package_iter++;
3219
0
        senders_iter++;
3220
0
    }
3221
0
}
3222
3223
// NOTE: the orphan processing used to be uninterruptible and quadratic, which could allow a peer to stall the node for
3224
// hours with specially crafted transactions. See https://bitcoincore.org/en/2024/07/03/disclose-orphan-dos.
3225
bool PeerManagerImpl::ProcessOrphanTx(Peer& peer)
3226
0
{
3227
0
    AssertLockHeld(g_msgproc_mutex);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
3228
0
    LOCK2(::cs_main, m_tx_download_mutex);
Line
Count
Source
268
0
    UniqueLock criticalblock1(MaybeCheckNotHeld(cs1), #cs1, __FILE__, __LINE__); \
269
0
    UniqueLock criticalblock2(MaybeCheckNotHeld(cs2), #cs2, __FILE__, __LINE__)
3229
3230
0
    CTransactionRef porphanTx = nullptr;
3231
3232
0
    while (CTransactionRef porphanTx = m_txdownloadman.GetTxToReconsider(peer.m_id)) {
3233
0
        const MempoolAcceptResult result = m_chainman.ProcessTransaction(porphanTx);
3234
0
        const TxValidationState& state = result.m_state;
3235
0
        const Txid& orphanHash = porphanTx->GetHash();
3236
0
        const Wtxid& orphan_wtxid = porphanTx->GetWitnessHash();
3237
3238
0
        if (result.m_result_type == MempoolAcceptResult::ResultType::VALID) {
3239
0
            LogDebug(BCLog::TXPACKAGES, "   accepted orphan tx %s (wtxid=%s)\n", orphanHash.ToString(), orphan_wtxid.ToString());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3240
0
            ProcessValidTx(peer.m_id, porphanTx, result.m_replaced_transactions);
3241
0
            return true;
3242
0
        } else if (state.GetResult() != TxValidationResult::TX_MISSING_INPUTS) {
3243
0
            LogDebug(BCLog::TXPACKAGES, "   invalid orphan tx %s (wtxid=%s) from peer=%d. %s\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3244
0
                orphanHash.ToString(),
3245
0
                orphan_wtxid.ToString(),
3246
0
                peer.m_id,
3247
0
                state.ToString());
3248
3249
0
            if (Assume(state.IsInvalid() &&
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
3250
0
                       state.GetResult() != TxValidationResult::TX_UNKNOWN &&
3251
0
                       state.GetResult() != TxValidationResult::TX_NO_MEMPOOL &&
3252
0
                       state.GetResult() != TxValidationResult::TX_RESULT_UNSET)) {
3253
0
                ProcessInvalidTx(peer.m_id, porphanTx, state, /*first_time_failure=*/false);
3254
0
            }
3255
0
            return true;
3256
0
        }
3257
0
    }
3258
3259
0
    return false;
3260
0
}
3261
3262
bool PeerManagerImpl::PrepareBlockFilterRequest(CNode& node, Peer& peer,
3263
                                                BlockFilterType filter_type, uint32_t start_height,
3264
                                                const uint256& stop_hash, uint32_t max_height_diff,
3265
                                                const CBlockIndex*& stop_index,
3266
                                                BlockFilterIndex*& filter_index)
3267
0
{
3268
0
    const bool supported_filter_type =
3269
0
        (filter_type == BlockFilterType::BASIC &&
3270
0
         (peer.m_our_services & NODE_COMPACT_FILTERS));
3271
0
    if (!supported_filter_type) {
3272
0
        LogDebug(BCLog::NET, "peer requested unsupported block filter type: %d, %s",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3273
0
                 static_cast<uint8_t>(filter_type), node.DisconnectMsg());
3274
0
        node.fDisconnect = true;
3275
0
        return false;
3276
0
    }
3277
3278
0
    {
3279
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
3280
0
        stop_index = m_chainman.m_blockman.LookupBlockIndex(stop_hash);
3281
3282
        // Check that the stop block exists and the peer would be allowed to fetch it.
3283
0
        if (!stop_index || !BlockRequestAllowed(*stop_index)) {
3284
0
            LogDebug(BCLog::NET, "peer requested invalid block hash: %s, %s",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3285
0
                     stop_hash.ToString(), node.DisconnectMsg());
3286
0
            node.fDisconnect = true;
3287
0
            return false;
3288
0
        }
3289
0
    }
3290
3291
0
    uint32_t stop_height = stop_index->nHeight;
3292
0
    if (start_height > stop_height) {
3293
0
        LogDebug(BCLog::NET, "peer sent invalid getcfilters/getcfheaders with "
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3294
0
                 "start height %d and stop height %d, %s",
3295
0
                 start_height, stop_height, node.DisconnectMsg());
3296
0
        node.fDisconnect = true;
3297
0
        return false;
3298
0
    }
3299
0
    if (stop_height - start_height >= max_height_diff) {
3300
0
        LogDebug(BCLog::NET, "peer requested too many cfilters/cfheaders: %d / %d, %s",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3301
0
                 stop_height - start_height + 1, max_height_diff, node.DisconnectMsg());
3302
0
        node.fDisconnect = true;
3303
0
        return false;
3304
0
    }
3305
3306
0
    filter_index = GetBlockFilterIndex(filter_type);
3307
0
    if (!filter_index) {
3308
0
        LogDebug(BCLog::NET, "Filter index for supported type %s not found\n", BlockFilterTypeName(filter_type));
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3309
0
        return false;
3310
0
    }
3311
3312
0
    return true;
3313
0
}
3314
3315
void PeerManagerImpl::ProcessGetCFilters(CNode& node, Peer& peer, DataStream& vRecv)
3316
0
{
3317
0
    uint8_t filter_type_ser;
3318
0
    uint32_t start_height;
3319
0
    uint256 stop_hash;
3320
3321
0
    vRecv >> filter_type_ser >> start_height >> stop_hash;
3322
3323
0
    const BlockFilterType filter_type = static_cast<BlockFilterType>(filter_type_ser);
3324
3325
0
    const CBlockIndex* stop_index;
3326
0
    BlockFilterIndex* filter_index;
3327
0
    if (!PrepareBlockFilterRequest(node, peer, filter_type, start_height, stop_hash,
3328
0
                                   MAX_GETCFILTERS_SIZE, stop_index, filter_index)) {
3329
0
        return;
3330
0
    }
3331
3332
0
    std::vector<BlockFilter> filters;
3333
0
    if (!filter_index->LookupFilterRange(start_height, stop_index, filters)) {
3334
0
        LogDebug(BCLog::NET, "Failed to find block filter in index: filter_type=%s, start_height=%d, stop_hash=%s\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3335
0
                     BlockFilterTypeName(filter_type), start_height, stop_hash.ToString());
3336
0
        return;
3337
0
    }
3338
3339
0
    for (const auto& filter : filters) {
3340
0
        MakeAndPushMessage(node, NetMsgType::CFILTER, filter);
3341
0
    }
3342
0
}
3343
3344
void PeerManagerImpl::ProcessGetCFHeaders(CNode& node, Peer& peer, DataStream& vRecv)
3345
0
{
3346
0
    uint8_t filter_type_ser;
3347
0
    uint32_t start_height;
3348
0
    uint256 stop_hash;
3349
3350
0
    vRecv >> filter_type_ser >> start_height >> stop_hash;
3351
3352
0
    const BlockFilterType filter_type = static_cast<BlockFilterType>(filter_type_ser);
3353
3354
0
    const CBlockIndex* stop_index;
3355
0
    BlockFilterIndex* filter_index;
3356
0
    if (!PrepareBlockFilterRequest(node, peer, filter_type, start_height, stop_hash,
3357
0
                                   MAX_GETCFHEADERS_SIZE, stop_index, filter_index)) {
3358
0
        return;
3359
0
    }
3360
3361
0
    uint256 prev_header;
3362
0
    if (start_height > 0) {
3363
0
        const CBlockIndex* const prev_block =
3364
0
            stop_index->GetAncestor(static_cast<int>(start_height - 1));
3365
0
        if (!filter_index->LookupFilterHeader(prev_block, prev_header)) {
3366
0
            LogDebug(BCLog::NET, "Failed to find block filter header in index: filter_type=%s, block_hash=%s\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3367
0
                         BlockFilterTypeName(filter_type), prev_block->GetBlockHash().ToString());
3368
0
            return;
3369
0
        }
3370
0
    }
3371
3372
0
    std::vector<uint256> filter_hashes;
3373
0
    if (!filter_index->LookupFilterHashRange(start_height, stop_index, filter_hashes)) {
3374
0
        LogDebug(BCLog::NET, "Failed to find block filter hashes in index: filter_type=%s, start_height=%d, stop_hash=%s\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3375
0
                     BlockFilterTypeName(filter_type), start_height, stop_hash.ToString());
3376
0
        return;
3377
0
    }
3378
3379
0
    MakeAndPushMessage(node, NetMsgType::CFHEADERS,
3380
0
              filter_type_ser,
3381
0
              stop_index->GetBlockHash(),
3382
0
              prev_header,
3383
0
              filter_hashes);
3384
0
}
3385
3386
void PeerManagerImpl::ProcessGetCFCheckPt(CNode& node, Peer& peer, DataStream& vRecv)
3387
0
{
3388
0
    uint8_t filter_type_ser;
3389
0
    uint256 stop_hash;
3390
3391
0
    vRecv >> filter_type_ser >> stop_hash;
3392
3393
0
    const BlockFilterType filter_type = static_cast<BlockFilterType>(filter_type_ser);
3394
3395
0
    const CBlockIndex* stop_index;
3396
0
    BlockFilterIndex* filter_index;
3397
0
    if (!PrepareBlockFilterRequest(node, peer, filter_type, /*start_height=*/0, stop_hash,
3398
0
                                   /*max_height_diff=*/std::numeric_limits<uint32_t>::max(),
3399
0
                                   stop_index, filter_index)) {
3400
0
        return;
3401
0
    }
3402
3403
0
    std::vector<uint256> headers(stop_index->nHeight / CFCHECKPT_INTERVAL);
3404
3405
    // Populate headers.
3406
0
    const CBlockIndex* block_index = stop_index;
3407
0
    for (int i = headers.size() - 1; i >= 0; i--) {
3408
0
        int height = (i + 1) * CFCHECKPT_INTERVAL;
3409
0
        block_index = block_index->GetAncestor(height);
3410
3411
0
        if (!filter_index->LookupFilterHeader(block_index, headers[i])) {
3412
0
            LogDebug(BCLog::NET, "Failed to find block filter header in index: filter_type=%s, block_hash=%s\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3413
0
                         BlockFilterTypeName(filter_type), block_index->GetBlockHash().ToString());
3414
0
            return;
3415
0
        }
3416
0
    }
3417
3418
0
    MakeAndPushMessage(node, NetMsgType::CFCHECKPT,
3419
0
              filter_type_ser,
3420
0
              stop_index->GetBlockHash(),
3421
0
              headers);
3422
0
}
3423
3424
void PeerManagerImpl::ProcessBlock(CNode& node, const std::shared_ptr<const CBlock>& block, bool force_processing, bool min_pow_checked)
3425
0
{
3426
0
    bool new_block{false};
3427
0
    m_chainman.ProcessNewBlock(block, force_processing, min_pow_checked, &new_block);
3428
0
    if (new_block) {
3429
0
        node.m_last_block_time = GetTime<std::chrono::seconds>();
3430
        // In case this block came from a different peer than we requested
3431
        // from, we can erase the block request now anyway (as we just stored
3432
        // this block to disk).
3433
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
3434
0
        RemoveBlockRequest(block->GetHash(), std::nullopt);
3435
0
    } else {
3436
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
3437
0
        mapBlockSource.erase(block->GetHash());
3438
0
    }
3439
0
}
3440
3441
void PeerManagerImpl::ProcessCompactBlockTxns(CNode& pfrom, Peer& peer, const BlockTransactions& block_transactions)
3442
0
{
3443
0
    std::shared_ptr<CBlock> pblock = std::make_shared<CBlock>();
3444
0
    bool fBlockRead{false};
3445
0
    {
3446
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
3447
3448
0
        auto range_flight = mapBlocksInFlight.equal_range(block_transactions.blockhash);
3449
0
        size_t already_in_flight = std::distance(range_flight.first, range_flight.second);
3450
0
        bool requested_block_from_this_peer{false};
3451
3452
        // Multimap ensures ordering of outstanding requests. It's either empty or first in line.
3453
0
        bool first_in_flight = already_in_flight == 0 || (range_flight.first->second.first == pfrom.GetId());
3454
3455
0
        while (range_flight.first != range_flight.second) {
3456
0
            auto [node_id, block_it] = range_flight.first->second;
3457
0
            if (node_id == pfrom.GetId() && block_it->partialBlock) {
3458
0
                requested_block_from_this_peer = true;
3459
0
                break;
3460
0
            }
3461
0
            range_flight.first++;
3462
0
        }
3463
3464
0
        if (!requested_block_from_this_peer) {
3465
0
            LogDebug(BCLog::NET, "Peer %d sent us block transactions for block we weren't expecting\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3466
0
            return;
3467
0
        }
3468
3469
0
        PartiallyDownloadedBlock& partialBlock = *range_flight.first->second.second->partialBlock;
3470
3471
0
        if (partialBlock.header.IsNull()) {
3472
            // It is possible for the header to be empty if a previous call to FillBlock wiped the header, but left
3473
            // the PartiallyDownloadedBlock pointer around (i.e. did not call RemoveBlockRequest). In this case, we
3474
            // should not call LookupBlockIndex below.
3475
0
            RemoveBlockRequest(block_transactions.blockhash, pfrom.GetId());
3476
0
            Misbehaving(peer, "previous compact block reconstruction attempt failed");
3477
0
            LogDebug(BCLog::NET, "Peer %d sent compact block transactions multiple times", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3478
0
            return;
3479
0
        }
3480
3481
        // We should not have gotten this far in compact block processing unless it's attached to a known header
3482
0
        const CBlockIndex* prev_block{Assume(m_chainman.m_blockman.LookupBlockIndex(partialBlock.header.hashPrevBlock))};
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
3483
0
        ReadStatus status = partialBlock.FillBlock(*pblock, block_transactions.txn,
3484
0
                                                   /*segwit_active=*/DeploymentActiveAfter(prev_block, m_chainman, Consensus::DEPLOYMENT_SEGWIT));
3485
0
        if (status == READ_STATUS_INVALID) {
3486
0
            RemoveBlockRequest(block_transactions.blockhash, pfrom.GetId()); // Reset in-flight state in case Misbehaving does not result in a disconnect
3487
0
            Misbehaving(peer, "invalid compact block/non-matching block transactions");
3488
0
            return;
3489
0
        } else if (status == READ_STATUS_FAILED) {
3490
0
            if (first_in_flight) {
3491
                // Might have collided, fall back to getdata now :(
3492
                // We keep the failed partialBlock to disallow processing another compact block announcement from the same
3493
                // peer for the same block. We let the full block download below continue under the same m_downloading_since
3494
                // timer.
3495
0
                std::vector<CInv> invs;
3496
0
                invs.emplace_back(MSG_BLOCK | GetFetchFlags(peer), block_transactions.blockhash);
3497
0
                MakeAndPushMessage(pfrom, NetMsgType::GETDATA, invs);
3498
0
            } else {
3499
0
                RemoveBlockRequest(block_transactions.blockhash, pfrom.GetId());
3500
0
                LogDebug(BCLog::NET, "Peer %d sent us a compact block but it failed to reconstruct, waiting on first download to complete\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3501
0
                return;
3502
0
            }
3503
0
        } else {
3504
            // Block is okay for further processing
3505
0
            RemoveBlockRequest(block_transactions.blockhash, pfrom.GetId()); // it is now an empty pointer
3506
0
            fBlockRead = true;
3507
            // mapBlockSource is used for potentially punishing peers and
3508
            // updating which peers send us compact blocks, so the race
3509
            // between here and cs_main in ProcessNewBlock is fine.
3510
            // BIP 152 permits peers to relay compact blocks after validating
3511
            // the header only; we should not punish peers if the block turns
3512
            // out to be invalid.
3513
0
            mapBlockSource.emplace(block_transactions.blockhash, std::make_pair(pfrom.GetId(), false));
3514
0
        }
3515
0
    } // Don't hold cs_main when we call into ProcessNewBlock
3516
0
    if (fBlockRead) {
3517
        // Since we requested this block (it was in mapBlocksInFlight), force it to be processed,
3518
        // even if it would not be a candidate for new tip (missing previous block, chain not long enough, etc)
3519
        // This bypasses some anti-DoS logic in AcceptBlock (eg to prevent
3520
        // disk-space attacks), but this should be safe due to the
3521
        // protections in the compact block handler -- see related comment
3522
        // in compact block optimistic reconstruction handling.
3523
0
        ProcessBlock(pfrom, pblock, /*force_processing=*/true, /*min_pow_checked=*/true);
3524
0
    }
3525
0
    return;
3526
0
}
3527
3528
0
void PeerManagerImpl::LogBlockHeader(const CBlockIndex& index, const CNode& peer, bool via_compact_block) {
3529
    // To prevent log spam, this function should only be called after it was determined that a
3530
    // header is both new and valid.
3531
    //
3532
    // These messages are valuable for detecting potential selfish mining behavior;
3533
    // if multiple displacing headers are seen near simultaneously across many
3534
    // nodes in the network, this might be an indication of selfish mining.
3535
    // In addition it can be used to identify peers which send us a header, but
3536
    // don't followup with a complete and valid (compact) block.
3537
    // Having this log by default when not in IBD ensures broad availability of
3538
    // this data in case investigation is merited.
3539
0
    const auto msg = strprintf(
Line
Count
Source
1172
0
#define strprintf tfm::format
3540
0
        "Saw new %sheader hash=%s height=%d %s",
3541
0
        via_compact_block ? "cmpctblock " : "",
3542
0
        index.GetBlockHash().ToString(),
3543
0
        index.nHeight,
3544
0
        peer.LogPeer()
3545
0
    );
3546
0
    if (m_chainman.IsInitialBlockDownload()) {
3547
0
        LogDebug(BCLog::VALIDATION, "%s", msg);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3548
0
    } else {
3549
0
        LogInfo("%s", msg);
Line
Count
Source
95
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3550
0
    }
3551
0
}
3552
3553
void PeerManagerImpl::PushPrivateBroadcastTx(CNode& node)
3554
0
{
3555
0
    Assume(node.IsPrivateBroadcastConn());
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
3556
3557
0
    const auto opt_tx{m_tx_for_private_broadcast.PickTxForSend(node.GetId(), CService{node.addr})};
3558
0
    if (!opt_tx) {
3559
0
        LogDebug(BCLog::PRIVBROADCAST, "Disconnecting: no more transactions for private broadcast (connected in vain), %s", node.LogPeer());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3560
0
        node.fDisconnect = true;
3561
0
        return;
3562
0
    }
3563
0
    const CTransactionRef& tx{*opt_tx};
3564
3565
0
    LogDebug(BCLog::PRIVBROADCAST, "P2P handshake completed, sending INV for txid=%s%s, %s",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3566
0
             tx->GetHash().ToString(), tx->HasWitness() ? strprintf(", wtxid=%s", tx->GetWitnessHash().ToString()) : "",
3567
0
             node.LogPeer());
3568
3569
0
    MakeAndPushMessage(node, NetMsgType::INV, std::vector<CInv>{{CInv{MSG_TX, tx->GetHash().ToUint256()}}});
3570
0
}
3571
3572
void PeerManagerImpl::ProcessMessage(Peer& peer, CNode& pfrom, const std::string& msg_type, DataStream& vRecv,
3573
                                     const std::chrono::microseconds time_received,
3574
                                     const std::atomic<bool>& interruptMsgProc)
3575
0
{
3576
0
    AssertLockHeld(g_msgproc_mutex);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
3577
3578
0
    LogDebug(BCLog::NET, "received: %s (%u bytes) peer=%d\n", SanitizeString(msg_type), vRecv.size(), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3579
3580
3581
0
    if (msg_type == NetMsgType::VERSION) {
3582
0
        if (pfrom.nVersion != 0) {
3583
0
            LogDebug(BCLog::NET, "redundant version message from peer=%d\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3584
0
            return;
3585
0
        }
3586
3587
0
        int64_t nTime;
3588
0
        CService addrMe;
3589
0
        uint64_t nNonce = 1;
3590
0
        ServiceFlags nServices;
3591
0
        int nVersion;
3592
0
        std::string cleanSubVer;
3593
0
        int starting_height = -1;
3594
0
        bool fRelay = true;
3595
3596
0
        vRecv >> nVersion >> Using<CustomUintFormatter<8>>(nServices) >> nTime;
3597
0
        if (nTime < 0) {
3598
0
            nTime = 0;
3599
0
        }
3600
0
        vRecv.ignore(8); // Ignore the addrMe service bits sent by the peer
3601
0
        vRecv >> CNetAddr::V1(addrMe);
3602
0
        if (!pfrom.IsInboundConn())
3603
0
        {
3604
            // Overwrites potentially existing services. In contrast to this,
3605
            // unvalidated services received via gossip relay in ADDR/ADDRV2
3606
            // messages are only ever added but cannot replace existing ones.
3607
0
            m_addrman.SetServices(pfrom.addr, nServices);
3608
0
        }
3609
0
        if (pfrom.ExpectServicesFromConn() && !HasAllDesirableServiceFlags(nServices))
3610
0
        {
3611
0
            LogDebug(BCLog::NET, "peer does not offer the expected services (%08x offered, %08x expected), %s",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3612
0
                     nServices,
3613
0
                     GetDesirableServiceFlags(nServices),
3614
0
                     pfrom.DisconnectMsg());
3615
0
            pfrom.fDisconnect = true;
3616
0
            return;
3617
0
        }
3618
3619
0
        if (nVersion < MIN_PEER_PROTO_VERSION) {
3620
            // disconnect from peers older than this proto version
3621
0
            LogDebug(BCLog::NET, "peer using obsolete version %i, %s", nVersion, pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3622
0
            pfrom.fDisconnect = true;
3623
0
            return;
3624
0
        }
3625
3626
0
        if (!vRecv.empty()) {
3627
            // The version message includes information about the sending node which we don't use:
3628
            //   - 8 bytes (service bits)
3629
            //   - 16 bytes (ipv6 address)
3630
            //   - 2 bytes (port)
3631
0
            vRecv.ignore(26);
3632
0
            vRecv >> nNonce;
3633
0
        }
3634
0
        if (!vRecv.empty()) {
3635
0
            std::string strSubVer;
3636
0
            vRecv >> LIMITED_STRING(strSubVer, MAX_SUBVERSION_LENGTH);
Line
Count
Source
494
0
#define LIMITED_STRING(obj,n) Using<LimitedStringFormatter<n>>(obj)
3637
0
            cleanSubVer = SanitizeString(strSubVer);
3638
0
        }
3639
0
        if (!vRecv.empty()) {
3640
0
            vRecv >> starting_height;
3641
0
        }
3642
0
        if (!vRecv.empty())
3643
0
            vRecv >> fRelay;
3644
        // Disconnect if we connected to ourself
3645
0
        if (pfrom.IsInboundConn() && !m_connman.CheckIncomingNonce(nNonce))
3646
0
        {
3647
0
            LogInfo("connected to self at %s, disconnecting\n", pfrom.addr.ToStringAddrPort());
Line
Count
Source
95
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3648
0
            pfrom.fDisconnect = true;
3649
0
            return;
3650
0
        }
3651
3652
0
        if (pfrom.IsInboundConn() && addrMe.IsRoutable())
3653
0
        {
3654
0
            SeenLocal(addrMe);
3655
0
        }
3656
3657
        // Inbound peers send us their version message when they connect.
3658
        // We send our version message in response.
3659
0
        if (pfrom.IsInboundConn()) {
3660
0
            PushNodeVersion(pfrom, peer);
3661
0
        }
3662
3663
        // Change version
3664
0
        const int greatest_common_version = std::min(nVersion, PROTOCOL_VERSION);
3665
0
        pfrom.SetCommonVersion(greatest_common_version);
3666
0
        pfrom.nVersion = nVersion;
3667
3668
0
        pfrom.m_has_all_wanted_services = HasAllDesirableServiceFlags(nServices);
3669
0
        peer.m_their_services = nServices;
3670
0
        pfrom.SetAddrLocal(addrMe);
3671
0
        {
3672
0
            LOCK(pfrom.m_subver_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
3673
0
            pfrom.cleanSubVer = cleanSubVer;
3674
0
        }
3675
3676
        // Only initialize the Peer::TxRelay m_relay_txs data structure if:
3677
        // - this isn't an outbound block-relay-only connection, and
3678
        // - this isn't an outbound feeler connection, and
3679
        // - fRelay=true (the peer wishes to receive transaction announcements)
3680
        //   or we're offering NODE_BLOOM to this peer. NODE_BLOOM means that
3681
        //   the peer may turn on transaction relay later.
3682
0
        if (!pfrom.IsBlockOnlyConn() &&
3683
0
            !pfrom.IsFeelerConn() &&
3684
0
            (fRelay || (peer.m_our_services & NODE_BLOOM))) {
3685
0
            auto* const tx_relay = peer.SetTxRelay();
3686
0
            {
3687
0
                LOCK(tx_relay->m_bloom_filter_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
3688
0
                tx_relay->m_relay_txs = fRelay; // set to true after we get the first filter* message
3689
0
            }
3690
0
            if (fRelay) pfrom.m_relays_txs = true;
3691
0
        }
3692
3693
0
        const auto mapped_as{m_connman.GetMappedAS(pfrom.addr)};
3694
0
        LogDebug(BCLog::NET, "receive version message: %s: version %d, blocks=%d, us=%s, txrelay=%d, %s%s",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3695
0
                  cleanSubVer.empty() ? "<no user agent>" : cleanSubVer, pfrom.nVersion,
3696
0
                  starting_height, addrMe.ToStringAddrPort(), fRelay, pfrom.LogPeer(),
3697
0
                  (mapped_as ? strprintf(", mapped_as=%d", mapped_as) : ""));
3698
3699
0
        if (pfrom.IsPrivateBroadcastConn()) {
3700
0
            if (fRelay) {
3701
0
                MakeAndPushMessage(pfrom, NetMsgType::VERACK);
3702
0
            } else {
3703
0
                LogDebug(BCLog::PRIVBROADCAST, "Disconnecting: does not support transaction relay (connected in vain), %s",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3704
0
                         pfrom.LogPeer());
3705
0
                pfrom.fDisconnect = true;
3706
0
            }
3707
0
            return;
3708
0
        }
3709
3710
0
        if (greatest_common_version >= WTXID_RELAY_VERSION) {
3711
0
            MakeAndPushMessage(pfrom, NetMsgType::WTXIDRELAY);
3712
0
        }
3713
3714
        // Signal ADDRv2 support (BIP155).
3715
0
        if (greatest_common_version >= 70016) {
3716
            // BIP155 defines addrv2 and sendaddrv2 for all protocol versions, but some
3717
            // implementations reject messages they don't know. As a courtesy, don't send
3718
            // it to nodes with a version before 70016, as no software is known to support
3719
            // BIP155 that doesn't announce at least that protocol version number.
3720
0
            MakeAndPushMessage(pfrom, NetMsgType::SENDADDRV2);
3721
0
        }
3722
3723
0
        if (greatest_common_version >= WTXID_RELAY_VERSION && m_txreconciliation) {
3724
            // Per BIP-330, we announce txreconciliation support if:
3725
            // - protocol version per the peer's VERSION message supports WTXID_RELAY;
3726
            // - transaction relay is supported per the peer's VERSION message
3727
            // - this is not a block-relay-only connection and not a feeler
3728
            // - this is not an addr fetch connection;
3729
            // - we are not in -blocksonly mode.
3730
0
            const auto* tx_relay = peer.GetTxRelay();
3731
0
            if (tx_relay && WITH_LOCK(tx_relay->m_bloom_filter_mutex, return tx_relay->m_relay_txs) &&
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
3732
0
                !pfrom.IsAddrFetchConn() && !m_opts.ignore_incoming_txs) {
3733
0
                const uint64_t recon_salt = m_txreconciliation->PreRegisterPeer(pfrom.GetId());
3734
0
                MakeAndPushMessage(pfrom, NetMsgType::SENDTXRCNCL,
3735
0
                                   TXRECONCILIATION_VERSION, recon_salt);
3736
0
            }
3737
0
        }
3738
3739
0
        MakeAndPushMessage(pfrom, NetMsgType::VERACK);
3740
3741
        // Potentially mark this peer as a preferred download peer.
3742
0
        {
3743
0
            LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
3744
0
            CNodeState* state = State(pfrom.GetId());
3745
0
            state->fPreferredDownload = (!pfrom.IsInboundConn() || pfrom.HasPermission(NetPermissionFlags::NoBan)) && !pfrom.IsAddrFetchConn() && CanServeBlocks(peer);
3746
0
            m_num_preferred_download_peers += state->fPreferredDownload;
3747
0
        }
3748
3749
        // Attempt to initialize address relay for outbound peers and use result
3750
        // to decide whether to send GETADDR, so that we don't send it to
3751
        // inbound or outbound block-relay-only peers.
3752
0
        bool send_getaddr{false};
3753
0
        if (!pfrom.IsInboundConn()) {
3754
0
            send_getaddr = SetupAddressRelay(pfrom, peer);
3755
0
        }
3756
0
        if (send_getaddr) {
3757
            // Do a one-time address fetch to help populate/update our addrman.
3758
            // If we're starting up for the first time, our addrman may be pretty
3759
            // empty, so this mechanism is important to help us connect to the network.
3760
            // We skip this for block-relay-only peers. We want to avoid
3761
            // potentially leaking addr information and we do not want to
3762
            // indicate to the peer that we will participate in addr relay.
3763
0
            MakeAndPushMessage(pfrom, NetMsgType::GETADDR);
3764
0
            peer.m_getaddr_sent = true;
3765
            // When requesting a getaddr, accept an additional MAX_ADDR_TO_SEND addresses in response
3766
            // (bypassing the MAX_ADDR_PROCESSING_TOKEN_BUCKET limit).
3767
0
            peer.m_addr_token_bucket += MAX_ADDR_TO_SEND;
3768
0
        }
3769
3770
0
        if (!pfrom.IsInboundConn()) {
3771
            // For non-inbound connections, we update the addrman to record
3772
            // connection success so that addrman will have an up-to-date
3773
            // notion of which peers are online and available.
3774
            //
3775
            // While we strive to not leak information about block-relay-only
3776
            // connections via the addrman, not moving an address to the tried
3777
            // table is also potentially detrimental because new-table entries
3778
            // are subject to eviction in the event of addrman collisions.  We
3779
            // mitigate the information-leak by never calling
3780
            // AddrMan::Connected() on block-relay-only peers; see
3781
            // FinalizeNode().
3782
            //
3783
            // This moves an address from New to Tried table in Addrman,
3784
            // resolves tried-table collisions, etc.
3785
0
            m_addrman.Good(pfrom.addr);
3786
0
        }
3787
3788
0
        peer.m_time_offset = NodeSeconds{std::chrono::seconds{nTime}} - Now<NodeSeconds>();
3789
0
        if (!pfrom.IsInboundConn()) {
3790
            // Don't use timedata samples from inbound peers to make it
3791
            // harder for others to create false warnings about our clock being out of sync.
3792
0
            m_outbound_time_offsets.Add(peer.m_time_offset);
3793
0
            m_outbound_time_offsets.WarnIfOutOfSync();
3794
0
        }
3795
3796
        // If the peer is old enough to have the old alert system, send it the final alert.
3797
0
        if (greatest_common_version <= 70012) {
3798
0
            constexpr auto finalAlert{"60010000000000000000000000ffffff7f00000000ffffff7ffeffff7f01ffffff7f00000000ffffff7f00ffffff7f002f555247454e543a20416c657274206b657920636f6d70726f6d697365642c2075706772616465207265717569726564004630440220653febd6410f470f6bae11cad19c48413becb1ac2c17f908fd0fd53bdc3abd5202206d0e9c96fe88d4a0f01ed9dedae2b6f9e00da94cad0fecaae66ecf689bf71b50"_hex};
3799
0
            MakeAndPushMessage(pfrom, "alert", finalAlert);
3800
0
        }
3801
3802
        // Feeler connections exist only to verify if address is online.
3803
0
        if (pfrom.IsFeelerConn()) {
3804
0
            LogDebug(BCLog::NET, "feeler connection completed, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3805
0
            pfrom.fDisconnect = true;
3806
0
        }
3807
0
        return;
3808
0
    }
3809
3810
0
    if (pfrom.nVersion == 0) {
3811
        // Must have a version message before anything else
3812
0
        LogDebug(BCLog::NET, "non-version message before version handshake. Message \"%s\" from peer=%d\n", SanitizeString(msg_type), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3813
0
        return;
3814
0
    }
3815
3816
0
    if (msg_type == NetMsgType::VERACK) {
3817
0
        if (pfrom.fSuccessfullyConnected) {
3818
0
            LogDebug(BCLog::NET, "ignoring redundant verack message from peer=%d\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3819
0
            return;
3820
0
        }
3821
3822
0
        auto new_peer_msg = [&]() {
3823
0
            const auto mapped_as{m_connman.GetMappedAS(pfrom.addr)};
3824
0
            return strprintf("New %s peer connected: transport: %s, version: %d, %s%s",
Line
Count
Source
1172
0
#define strprintf tfm::format
3825
0
                pfrom.ConnectionTypeAsString(),
3826
0
                TransportTypeAsString(pfrom.m_transport->GetInfo().transport_type),
3827
0
                pfrom.nVersion.load(), pfrom.LogPeer(),
3828
0
                (mapped_as ? strprintf(", mapped_as=%d", mapped_as) : ""));
Line
Count
Source
1172
0
#define strprintf tfm::format
3829
0
        };
3830
3831
        // Log successful connections unconditionally for outbound, but not for inbound as those
3832
        // can be triggered by an attacker at high rate.
3833
0
        if (pfrom.IsInboundConn()) {
3834
0
            LogDebug(BCLog::NET, "%s", new_peer_msg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3835
0
        } else {
3836
0
            LogInfo("%s", new_peer_msg());
Line
Count
Source
95
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3837
0
        }
3838
3839
0
        if (auto tx_relay = peer.GetTxRelay()) {
3840
            // `TxRelay::m_tx_inventory_to_send` must be empty before the
3841
            // version handshake is completed as
3842
            // `TxRelay::m_next_inv_send_time` is first initialised in
3843
            // `SendMessages` after the verack is received. Any transactions
3844
            // received during the version handshake would otherwise
3845
            // immediately be advertised without random delay, potentially
3846
            // leaking the time of arrival to a spy.
3847
0
            Assume(WITH_LOCK(
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
3848
0
                tx_relay->m_tx_inventory_mutex,
3849
0
                return tx_relay->m_tx_inventory_to_send.empty() &&
3850
0
                       tx_relay->m_next_inv_send_time == 0s));
3851
0
        }
3852
3853
0
        if (pfrom.IsPrivateBroadcastConn()) {
3854
0
            pfrom.fSuccessfullyConnected = true;
3855
            // The peer may intend to later send us NetMsgType::FEEFILTER limiting
3856
            // cheap transactions, but we don't wait for that and thus we may send
3857
            // them a transaction below their threshold. This is ok because this
3858
            // relay logic is designed to work even in cases when the peer drops
3859
            // the transaction (due to it being too cheap, or for other reasons).
3860
0
            PushPrivateBroadcastTx(pfrom);
3861
0
            return;
3862
0
        }
3863
3864
0
        if (pfrom.GetCommonVersion() >= SHORT_IDS_BLOCKS_VERSION) {
3865
            // Tell our peer we are willing to provide version 2 cmpctblocks.
3866
            // However, we do not request new block announcements using
3867
            // cmpctblock messages.
3868
            // We send this to non-NODE NETWORK peers as well, because
3869
            // they may wish to request compact blocks from us
3870
0
            MakeAndPushMessage(pfrom, NetMsgType::SENDCMPCT, /*high_bandwidth=*/false, /*version=*/CMPCTBLOCKS_VERSION);
3871
0
        }
3872
3873
0
        if (m_txreconciliation) {
3874
0
            if (!peer.m_wtxid_relay || !m_txreconciliation->IsPeerRegistered(pfrom.GetId())) {
3875
                // We could have optimistically pre-registered/registered the peer. In that case,
3876
                // we should forget about the reconciliation state here if this wasn't followed
3877
                // by WTXIDRELAY (since WTXIDRELAY can't be announced later).
3878
0
                m_txreconciliation->ForgetPeer(pfrom.GetId());
3879
0
            }
3880
0
        }
3881
3882
0
        {
3883
0
            LOCK2(::cs_main, m_tx_download_mutex);
Line
Count
Source
268
0
    UniqueLock criticalblock1(MaybeCheckNotHeld(cs1), #cs1, __FILE__, __LINE__); \
269
0
    UniqueLock criticalblock2(MaybeCheckNotHeld(cs2), #cs2, __FILE__, __LINE__)
3884
0
            const CNodeState* state = State(pfrom.GetId());
3885
0
            m_txdownloadman.ConnectedPeer(pfrom.GetId(), node::TxDownloadConnectionInfo {
3886
0
                .m_preferred = state->fPreferredDownload,
3887
0
                .m_relay_permissions = pfrom.HasPermission(NetPermissionFlags::Relay),
3888
0
                .m_wtxid_relay = peer.m_wtxid_relay,
3889
0
            });
3890
0
        }
3891
3892
0
        pfrom.fSuccessfullyConnected = true;
3893
0
        return;
3894
0
    }
3895
3896
0
    if (msg_type == NetMsgType::SENDHEADERS) {
3897
0
        peer.m_prefers_headers = true;
3898
0
        return;
3899
0
    }
3900
3901
0
    if (msg_type == NetMsgType::SENDCMPCT) {
3902
0
        bool sendcmpct_hb{false};
3903
0
        uint64_t sendcmpct_version{0};
3904
0
        vRecv >> sendcmpct_hb >> sendcmpct_version;
3905
3906
        // Only support compact block relay with witnesses
3907
0
        if (sendcmpct_version != CMPCTBLOCKS_VERSION) return;
3908
3909
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
3910
0
        CNodeState* nodestate = State(pfrom.GetId());
3911
0
        nodestate->m_provides_cmpctblocks = true;
3912
0
        nodestate->m_requested_hb_cmpctblocks = sendcmpct_hb;
3913
        // save whether peer selects us as BIP152 high-bandwidth peer
3914
        // (receiving sendcmpct(1) signals high-bandwidth, sendcmpct(0) low-bandwidth)
3915
0
        pfrom.m_bip152_highbandwidth_from = sendcmpct_hb;
3916
0
        return;
3917
0
    }
3918
3919
    // BIP339 defines feature negotiation of wtxidrelay, which must happen between
3920
    // VERSION and VERACK to avoid relay problems from switching after a connection is up.
3921
0
    if (msg_type == NetMsgType::WTXIDRELAY) {
3922
0
        if (pfrom.fSuccessfullyConnected) {
3923
            // Disconnect peers that send a wtxidrelay message after VERACK.
3924
0
            LogDebug(BCLog::NET, "wtxidrelay received after verack, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3925
0
            pfrom.fDisconnect = true;
3926
0
            return;
3927
0
        }
3928
0
        if (pfrom.GetCommonVersion() >= WTXID_RELAY_VERSION) {
3929
0
            if (!peer.m_wtxid_relay) {
3930
0
                peer.m_wtxid_relay = true;
3931
0
                m_wtxid_relay_peers++;
3932
0
            } else {
3933
0
                LogDebug(BCLog::NET, "ignoring duplicate wtxidrelay from peer=%d\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3934
0
            }
3935
0
        } else {
3936
0
            LogDebug(BCLog::NET, "ignoring wtxidrelay due to old common version=%d from peer=%d\n", pfrom.GetCommonVersion(), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3937
0
        }
3938
0
        return;
3939
0
    }
3940
3941
    // BIP155 defines feature negotiation of addrv2 and sendaddrv2, which must happen
3942
    // between VERSION and VERACK.
3943
0
    if (msg_type == NetMsgType::SENDADDRV2) {
3944
0
        if (pfrom.fSuccessfullyConnected) {
3945
            // Disconnect peers that send a SENDADDRV2 message after VERACK.
3946
0
            LogDebug(BCLog::NET, "sendaddrv2 received after verack, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3947
0
            pfrom.fDisconnect = true;
3948
0
            return;
3949
0
        }
3950
0
        peer.m_wants_addrv2 = true;
3951
0
        return;
3952
0
    }
3953
3954
    // Received from a peer demonstrating readiness to announce transactions via reconciliations.
3955
    // This feature negotiation must happen between VERSION and VERACK to avoid relay problems
3956
    // from switching announcement protocols after the connection is up.
3957
0
    if (msg_type == NetMsgType::SENDTXRCNCL) {
3958
0
        if (!m_txreconciliation) {
3959
0
            LogDebug(BCLog::NET, "sendtxrcncl from peer=%d ignored, as our node does not have txreconciliation enabled\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3960
0
            return;
3961
0
        }
3962
3963
0
        if (pfrom.fSuccessfullyConnected) {
3964
0
            LogDebug(BCLog::NET, "sendtxrcncl received after verack, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3965
0
            pfrom.fDisconnect = true;
3966
0
            return;
3967
0
        }
3968
3969
        // Peer must not offer us reconciliations if we specified no tx relay support in VERSION.
3970
0
        if (RejectIncomingTxs(pfrom)) {
3971
0
            LogDebug(BCLog::NET, "sendtxrcncl received to which we indicated no tx relay, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3972
0
            pfrom.fDisconnect = true;
3973
0
            return;
3974
0
        }
3975
3976
        // Peer must not offer us reconciliations if they specified no tx relay support in VERSION.
3977
        // This flag might also be false in other cases, but the RejectIncomingTxs check above
3978
        // eliminates them, so that this flag fully represents what we are looking for.
3979
0
        const auto* tx_relay = peer.GetTxRelay();
3980
0
        if (!tx_relay || !WITH_LOCK(tx_relay->m_bloom_filter_mutex, return tx_relay->m_relay_txs)) {
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
3981
0
            LogDebug(BCLog::NET, "sendtxrcncl received which indicated no tx relay to us, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3982
0
            pfrom.fDisconnect = true;
3983
0
            return;
3984
0
        }
3985
3986
0
        uint32_t peer_txreconcl_version;
3987
0
        uint64_t remote_salt;
3988
0
        vRecv >> peer_txreconcl_version >> remote_salt;
3989
3990
0
        const ReconciliationRegisterResult result = m_txreconciliation->RegisterPeer(pfrom.GetId(), pfrom.IsInboundConn(),
3991
0
                                                                                     peer_txreconcl_version, remote_salt);
3992
0
        switch (result) {
3993
0
        case ReconciliationRegisterResult::NOT_FOUND:
3994
0
            LogDebug(BCLog::NET, "Ignore unexpected txreconciliation signal from peer=%d\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
3995
0
            break;
3996
0
        case ReconciliationRegisterResult::SUCCESS:
3997
0
            break;
3998
0
        case ReconciliationRegisterResult::ALREADY_REGISTERED:
3999
0
            LogDebug(BCLog::NET, "txreconciliation protocol violation (sendtxrcncl received from already registered peer), %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4000
0
            pfrom.fDisconnect = true;
4001
0
            return;
4002
0
        case ReconciliationRegisterResult::PROTOCOL_VIOLATION:
4003
0
            LogDebug(BCLog::NET, "txreconciliation protocol violation, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4004
0
            pfrom.fDisconnect = true;
4005
0
            return;
4006
0
        }
4007
0
        return;
4008
0
    }
4009
4010
0
    if (!pfrom.fSuccessfullyConnected) {
4011
0
        LogDebug(BCLog::NET, "Unsupported message \"%s\" prior to verack from peer=%d\n", SanitizeString(msg_type), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4012
0
        return;
4013
0
    }
4014
4015
0
    if (pfrom.IsPrivateBroadcastConn()) {
4016
0
        if (msg_type != NetMsgType::PONG && msg_type != NetMsgType::GETDATA) {
4017
0
            LogDebug(BCLog::PRIVBROADCAST, "Ignoring incoming message '%s', %s", msg_type, pfrom.LogPeer());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4018
0
            return;
4019
0
        }
4020
0
    }
4021
4022
0
    if (msg_type == NetMsgType::ADDR || msg_type == NetMsgType::ADDRV2) {
4023
0
        const auto ser_params{
4024
0
            msg_type == NetMsgType::ADDRV2 ?
4025
            // Set V2 param so that the CNetAddr and CAddress
4026
            // unserialize methods know that an address in v2 format is coming.
4027
0
            CAddress::V2_NETWORK :
4028
0
            CAddress::V1_NETWORK,
4029
0
        };
4030
4031
0
        std::vector<CAddress> vAddr;
4032
0
        vRecv >> ser_params(vAddr);
4033
0
        ProcessAddrs(msg_type, pfrom, peer, std::move(vAddr), interruptMsgProc);
4034
0
        return;
4035
0
    }
4036
4037
0
    if (msg_type == NetMsgType::INV) {
4038
0
        std::vector<CInv> vInv;
4039
0
        vRecv >> vInv;
4040
0
        if (vInv.size() > MAX_INV_SZ)
4041
0
        {
4042
0
            Misbehaving(peer, strprintf("inv message size = %u", vInv.size()));
Line
Count
Source
1172
0
#define strprintf tfm::format
4043
0
            return;
4044
0
        }
4045
4046
0
        const bool reject_tx_invs{RejectIncomingTxs(pfrom)};
4047
4048
0
        LOCK2(cs_main, m_tx_download_mutex);
Line
Count
Source
268
0
    UniqueLock criticalblock1(MaybeCheckNotHeld(cs1), #cs1, __FILE__, __LINE__); \
269
0
    UniqueLock criticalblock2(MaybeCheckNotHeld(cs2), #cs2, __FILE__, __LINE__)
4049
4050
0
        const auto current_time{GetTime<std::chrono::microseconds>()};
4051
0
        uint256* best_block{nullptr};
4052
4053
0
        for (CInv& inv : vInv) {
4054
0
            if (interruptMsgProc) return;
4055
4056
            // Ignore INVs that don't match wtxidrelay setting.
4057
            // Note that orphan parent fetching always uses MSG_TX GETDATAs regardless of the wtxidrelay setting.
4058
            // This is fine as no INV messages are involved in that process.
4059
0
            if (peer.m_wtxid_relay) {
4060
0
                if (inv.IsMsgTx()) continue;
4061
0
            } else {
4062
0
                if (inv.IsMsgWtx()) continue;
4063
0
            }
4064
4065
0
            if (inv.IsMsgBlk()) {
4066
0
                const bool fAlreadyHave = AlreadyHaveBlock(inv.hash);
4067
0
                LogDebug(BCLog::NET, "got inv: %s %s peer=%d", inv.ToString(), fAlreadyHave ? "have" : "new", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4068
4069
0
                UpdateBlockAvailability(pfrom.GetId(), inv.hash);
4070
0
                if (!fAlreadyHave && !m_chainman.m_blockman.LoadingBlocks() && !IsBlockRequested(inv.hash)) {
4071
                    // Headers-first is the primary method of announcement on
4072
                    // the network. If a node fell back to sending blocks by
4073
                    // inv, it may be for a re-org, or because we haven't
4074
                    // completed initial headers sync. The final block hash
4075
                    // provided should be the highest, so send a getheaders and
4076
                    // then fetch the blocks we need to catch up.
4077
0
                    best_block = &inv.hash;
4078
0
                }
4079
0
            } else if (inv.IsGenTxMsg()) {
4080
0
                if (reject_tx_invs) {
4081
0
                    LogDebug(BCLog::NET, "transaction (%s) inv sent in violation of protocol, %s", inv.hash.ToString(), pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4082
0
                    pfrom.fDisconnect = true;
4083
0
                    return;
4084
0
                }
4085
0
                const GenTxid gtxid = ToGenTxid(inv);
4086
0
                AddKnownTx(peer, inv.hash);
4087
4088
0
                if (!m_chainman.IsInitialBlockDownload()) {
4089
0
                    const bool fAlreadyHave{m_txdownloadman.AddTxAnnouncement(pfrom.GetId(), gtxid, current_time)};
4090
0
                    LogDebug(BCLog::NET, "got inv: %s %s peer=%d", inv.ToString(), fAlreadyHave ? "have" : "new", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4091
0
                }
4092
0
            } else {
4093
0
                LogDebug(BCLog::NET, "Unknown inv type \"%s\" received from peer=%d\n", inv.ToString(), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4094
0
            }
4095
0
        }
4096
4097
0
        if (best_block != nullptr) {
4098
            // If we haven't started initial headers-sync with this peer, then
4099
            // consider sending a getheaders now. On initial startup, there's a
4100
            // reliability vs bandwidth tradeoff, where we are only trying to do
4101
            // initial headers sync with one peer at a time, with a long
4102
            // timeout (at which point, if the sync hasn't completed, we will
4103
            // disconnect the peer and then choose another). In the meantime,
4104
            // as new blocks are found, we are willing to add one new peer per
4105
            // block to sync with as well, to sync quicker in the case where
4106
            // our initial peer is unresponsive (but less bandwidth than we'd
4107
            // use if we turned on sync with all peers).
4108
0
            CNodeState& state{*Assert(State(pfrom.GetId()))};
Line
Count
Source
113
0
#define Assert(val) inline_assertion_check<true>(val, std::source_location::current(), #val)
4109
0
            if (state.fSyncStarted || (!peer.m_inv_triggered_getheaders_before_sync && *best_block != m_last_block_inv_triggering_headers_sync)) {
4110
0
                if (MaybeSendGetHeaders(pfrom, GetLocator(m_chainman.m_best_header), peer)) {
4111
0
                    LogDebug(BCLog::NET, "getheaders (%d) %s to peer=%d\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4112
0
                            m_chainman.m_best_header->nHeight, best_block->ToString(),
4113
0
                            pfrom.GetId());
4114
0
                }
4115
0
                if (!state.fSyncStarted) {
4116
0
                    peer.m_inv_triggered_getheaders_before_sync = true;
4117
                    // Update the last block hash that triggered a new headers
4118
                    // sync, so that we don't turn on headers sync with more
4119
                    // than 1 new peer every new block.
4120
0
                    m_last_block_inv_triggering_headers_sync = *best_block;
4121
0
                }
4122
0
            }
4123
0
        }
4124
4125
0
        return;
4126
0
    }
4127
4128
0
    if (msg_type == NetMsgType::GETDATA) {
4129
0
        std::vector<CInv> vInv;
4130
0
        vRecv >> vInv;
4131
0
        if (vInv.size() > MAX_INV_SZ)
4132
0
        {
4133
0
            Misbehaving(peer, strprintf("getdata message size = %u", vInv.size()));
Line
Count
Source
1172
0
#define strprintf tfm::format
4134
0
            return;
4135
0
        }
4136
4137
0
        LogDebug(BCLog::NET, "received getdata (%u invsz) peer=%d\n", vInv.size(), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4138
4139
0
        if (vInv.size() > 0) {
4140
0
            LogDebug(BCLog::NET, "received getdata for: %s peer=%d\n", vInv[0].ToString(), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4141
0
        }
4142
4143
0
        if (pfrom.IsPrivateBroadcastConn()) {
4144
0
            const auto pushed_tx_opt{m_tx_for_private_broadcast.GetTxForNode(pfrom.GetId())};
4145
0
            if (!pushed_tx_opt) {
4146
0
                LogDebug(BCLog::PRIVBROADCAST, "Disconnecting: got GETDATA without sending an INV, %s",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4147
0
                         pfrom.LogPeer());
4148
0
                pfrom.fDisconnect = true;
4149
0
                return;
4150
0
            }
4151
4152
0
            const CTransactionRef& pushed_tx{*pushed_tx_opt};
4153
4154
            // The GETDATA request must contain exactly one inv and it must be for the transaction
4155
            // that we INVed to the peer earlier.
4156
0
            if (vInv.size() == 1 && vInv[0].IsMsgTx() && vInv[0].hash == pushed_tx->GetHash().ToUint256()) {
4157
4158
0
                MakeAndPushMessage(pfrom, NetMsgType::TX, TX_WITH_WITNESS(*pushed_tx));
4159
4160
0
                peer.m_ping_queued = true; // Ensure a ping will be sent: mimic a request via RPC.
4161
0
                MaybeSendPing(pfrom, peer, GetTime<std::chrono::microseconds>());
4162
0
            } else {
4163
0
                LogDebug(BCLog::PRIVBROADCAST, "Disconnecting: got an unexpected GETDATA message, %s",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4164
0
                         pfrom.LogPeer());
4165
0
                pfrom.fDisconnect = true;
4166
0
            }
4167
0
            return;
4168
0
        }
4169
4170
0
        {
4171
0
            LOCK(peer.m_getdata_requests_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4172
0
            peer.m_getdata_requests.insert(peer.m_getdata_requests.end(), vInv.begin(), vInv.end());
4173
0
            ProcessGetData(pfrom, peer, interruptMsgProc);
4174
0
        }
4175
4176
0
        return;
4177
0
    }
4178
4179
0
    if (msg_type == NetMsgType::GETBLOCKS) {
4180
0
        CBlockLocator locator;
4181
0
        uint256 hashStop;
4182
0
        vRecv >> locator >> hashStop;
4183
4184
0
        if (locator.vHave.size() > MAX_LOCATOR_SZ) {
4185
0
            LogDebug(BCLog::NET, "getblocks locator size %lld > %d, %s", locator.vHave.size(), MAX_LOCATOR_SZ, pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4186
0
            pfrom.fDisconnect = true;
4187
0
            return;
4188
0
        }
4189
4190
        // We might have announced the currently-being-connected tip using a
4191
        // compact block, which resulted in the peer sending a getblocks
4192
        // request, which we would otherwise respond to without the new block.
4193
        // To avoid this situation we simply verify that we are on our best
4194
        // known chain now. This is super overkill, but we handle it better
4195
        // for getheaders requests, and there are no known nodes which support
4196
        // compact blocks but still use getblocks to request blocks.
4197
0
        {
4198
0
            std::shared_ptr<const CBlock> a_recent_block;
4199
0
            {
4200
0
                LOCK(m_most_recent_block_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4201
0
                a_recent_block = m_most_recent_block;
4202
0
            }
4203
0
            BlockValidationState state;
4204
0
            if (!m_chainman.ActiveChainstate().ActivateBestChain(state, a_recent_block)) {
4205
0
                LogDebug(BCLog::NET, "failed to activate chain (%s)\n", state.ToString());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4206
0
            }
4207
0
        }
4208
4209
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4210
4211
        // Find the last block the caller has in the main chain
4212
0
        const CBlockIndex* pindex = m_chainman.ActiveChainstate().FindForkInGlobalIndex(locator);
4213
4214
        // Send the rest of the chain
4215
0
        if (pindex)
4216
0
            pindex = m_chainman.ActiveChain().Next(pindex);
4217
0
        int nLimit = 500;
4218
0
        LogDebug(BCLog::NET, "getblocks %d to %s limit %d from peer=%d\n", (pindex ? pindex->nHeight : -1), hashStop.IsNull() ? "end" : hashStop.ToString(), nLimit, pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4219
0
        for (; pindex; pindex = m_chainman.ActiveChain().Next(pindex))
4220
0
        {
4221
0
            if (pindex->GetBlockHash() == hashStop)
4222
0
            {
4223
0
                LogDebug(BCLog::NET, " getblocks stopping at %d %s", pindex->nHeight, pindex->GetBlockHash().ToString());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4224
0
                break;
4225
0
            }
4226
            // If pruning, don't inv blocks unless we have on disk and are likely to still have
4227
            // for some reasonable time window (1 hour) that block relay might require.
4228
0
            const int nPrunedBlocksLikelyToHave = MIN_BLOCKS_TO_KEEP - 3600 / m_chainparams.GetConsensus().nPowTargetSpacing;
4229
0
            if (m_chainman.m_blockman.IsPruneMode() && (!(pindex->nStatus & BLOCK_HAVE_DATA) || pindex->nHeight <= m_chainman.ActiveChain().Tip()->nHeight - nPrunedBlocksLikelyToHave)) {
4230
0
                LogDebug(BCLog::NET, " getblocks stopping, pruned or too old block at %d %s\n", pindex->nHeight, pindex->GetBlockHash().ToString());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4231
0
                break;
4232
0
            }
4233
0
            WITH_LOCK(peer.m_block_inv_mutex, peer.m_blocks_for_inv_relay.push_back(pindex->GetBlockHash()));
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
4234
0
            if (--nLimit <= 0) {
4235
                // When this block is requested, we'll send an inv that'll
4236
                // trigger the peer to getblocks the next batch of inventory.
4237
0
                LogDebug(BCLog::NET, " getblocks stopping at limit %d %s", pindex->nHeight, pindex->GetBlockHash().ToString());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4238
0
                WITH_LOCK(peer.m_block_inv_mutex, {peer.m_continuation_block = pindex->GetBlockHash();});
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
4239
0
                break;
4240
0
            }
4241
0
        }
4242
0
        return;
4243
0
    }
4244
4245
0
    if (msg_type == NetMsgType::GETBLOCKTXN) {
4246
0
        BlockTransactionsRequest req;
4247
0
        vRecv >> req;
4248
        // Verify differential encoding invariant: indexes must be strictly increasing
4249
        // DifferenceFormatter should guarantee this property during deserialization
4250
0
        for (size_t i = 1; i < req.indexes.size(); ++i) {
4251
0
            Assume(req.indexes[i] > req.indexes[i-1]);
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
4252
0
        }
4253
4254
0
        std::shared_ptr<const CBlock> recent_block;
4255
0
        {
4256
0
            LOCK(m_most_recent_block_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4257
0
            if (m_most_recent_block_hash == req.blockhash)
4258
0
                recent_block = m_most_recent_block;
4259
            // Unlock m_most_recent_block_mutex to avoid cs_main lock inversion
4260
0
        }
4261
0
        if (recent_block) {
4262
0
            SendBlockTransactions(pfrom, peer, *recent_block, req);
4263
0
            return;
4264
0
        }
4265
4266
0
        FlatFilePos block_pos{};
4267
0
        {
4268
0
            LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4269
4270
0
            const CBlockIndex* pindex = m_chainman.m_blockman.LookupBlockIndex(req.blockhash);
4271
0
            if (!pindex || !(pindex->nStatus & BLOCK_HAVE_DATA)) {
4272
0
                LogDebug(BCLog::NET, "Peer %d sent us a getblocktxn for a block we don't have\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4273
0
                return;
4274
0
            }
4275
4276
0
            if (pindex->nHeight >= m_chainman.ActiveChain().Height() - MAX_BLOCKTXN_DEPTH) {
4277
0
                block_pos = pindex->GetBlockPos();
4278
0
            }
4279
0
        }
4280
4281
0
        if (!block_pos.IsNull()) {
4282
0
            CBlock block;
4283
0
            const bool ret{m_chainman.m_blockman.ReadBlock(block, block_pos, req.blockhash)};
4284
            // If height is above MAX_BLOCKTXN_DEPTH then this block cannot get
4285
            // pruned after we release cs_main above, so this read should never fail.
4286
0
            assert(ret);
4287
4288
0
            SendBlockTransactions(pfrom, peer, block, req);
4289
0
            return;
4290
0
        }
4291
4292
        // If an older block is requested (should never happen in practice,
4293
        // but can happen in tests) send a block response instead of a
4294
        // blocktxn response. Sending a full block response instead of a
4295
        // small blocktxn response is preferable in the case where a peer
4296
        // might maliciously send lots of getblocktxn requests to trigger
4297
        // expensive disk reads, because it will require the peer to
4298
        // actually receive all the data read from disk over the network.
4299
0
        LogDebug(BCLog::NET, "Peer %d sent us a getblocktxn for a block > %i deep\n", pfrom.GetId(), MAX_BLOCKTXN_DEPTH);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4300
0
        CInv inv{MSG_WITNESS_BLOCK, req.blockhash};
4301
0
        WITH_LOCK(peer.m_getdata_requests_mutex, peer.m_getdata_requests.push_back(inv));
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
4302
        // The message processing loop will go around again (without pausing) and we'll respond then
4303
0
        return;
4304
0
    }
4305
4306
0
    if (msg_type == NetMsgType::GETHEADERS) {
4307
0
        CBlockLocator locator;
4308
0
        uint256 hashStop;
4309
0
        vRecv >> locator >> hashStop;
4310
4311
0
        if (locator.vHave.size() > MAX_LOCATOR_SZ) {
4312
0
            LogDebug(BCLog::NET, "getheaders locator size %lld > %d, %s", locator.vHave.size(), MAX_LOCATOR_SZ, pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4313
0
            pfrom.fDisconnect = true;
4314
0
            return;
4315
0
        }
4316
4317
0
        if (m_chainman.m_blockman.LoadingBlocks()) {
4318
0
            LogDebug(BCLog::NET, "Ignoring getheaders from peer=%d while importing/reindexing\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4319
0
            return;
4320
0
        }
4321
4322
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4323
4324
        // Don't serve headers from our active chain until our chainwork is at least
4325
        // the minimum chain work. This prevents us from starting a low-work headers
4326
        // sync that will inevitably be aborted by our peer.
4327
0
        if (m_chainman.ActiveTip() == nullptr ||
4328
0
                (m_chainman.ActiveTip()->nChainWork < m_chainman.MinimumChainWork() && !pfrom.HasPermission(NetPermissionFlags::Download))) {
4329
0
            LogDebug(BCLog::NET, "Ignoring getheaders from peer=%d because active chain has too little work; sending empty response\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4330
            // Just respond with an empty headers message, to tell the peer to
4331
            // go away but not treat us as unresponsive.
4332
0
            MakeAndPushMessage(pfrom, NetMsgType::HEADERS, std::vector<CBlockHeader>());
4333
0
            return;
4334
0
        }
4335
4336
0
        CNodeState *nodestate = State(pfrom.GetId());
4337
0
        const CBlockIndex* pindex = nullptr;
4338
0
        if (locator.IsNull())
4339
0
        {
4340
            // If locator is null, return the hashStop block
4341
0
            pindex = m_chainman.m_blockman.LookupBlockIndex(hashStop);
4342
0
            if (!pindex) {
4343
0
                return;
4344
0
            }
4345
0
            if (!BlockRequestAllowed(*pindex)) {
4346
0
                LogDebug(BCLog::NET, "%s: ignoring request from peer=%i for old block header that isn't in the main chain\n", __func__, pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4347
0
                return;
4348
0
            }
4349
0
        }
4350
0
        else
4351
0
        {
4352
            // Find the last block the caller has in the main chain
4353
0
            pindex = m_chainman.ActiveChainstate().FindForkInGlobalIndex(locator);
4354
0
            if (pindex)
4355
0
                pindex = m_chainman.ActiveChain().Next(pindex);
4356
0
        }
4357
4358
        // we must use CBlocks, as CBlockHeaders won't include the 0x00 nTx count at the end
4359
0
        std::vector<CBlock> vHeaders;
4360
0
        int nLimit = m_opts.max_headers_result;
4361
0
        LogDebug(BCLog::NET, "getheaders %d to %s from peer=%d\n", (pindex ? pindex->nHeight : -1), hashStop.IsNull() ? "end" : hashStop.ToString(), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4362
0
        for (; pindex; pindex = m_chainman.ActiveChain().Next(pindex))
4363
0
        {
4364
0
            vHeaders.emplace_back(pindex->GetBlockHeader());
4365
0
            if (--nLimit <= 0 || pindex->GetBlockHash() == hashStop)
4366
0
                break;
4367
0
        }
4368
        // pindex can be nullptr either if we sent m_chainman.ActiveChain().Tip() OR
4369
        // if our peer has m_chainman.ActiveChain().Tip() (and thus we are sending an empty
4370
        // headers message). In both cases it's safe to update
4371
        // pindexBestHeaderSent to be our tip.
4372
        //
4373
        // It is important that we simply reset the BestHeaderSent value here,
4374
        // and not max(BestHeaderSent, newHeaderSent). We might have announced
4375
        // the currently-being-connected tip using a compact block, which
4376
        // resulted in the peer sending a headers request, which we respond to
4377
        // without the new block. By resetting the BestHeaderSent, we ensure we
4378
        // will re-announce the new block via headers (or compact blocks again)
4379
        // in the SendMessages logic.
4380
0
        nodestate->pindexBestHeaderSent = pindex ? pindex : m_chainman.ActiveChain().Tip();
4381
0
        MakeAndPushMessage(pfrom, NetMsgType::HEADERS, TX_WITH_WITNESS(vHeaders));
4382
0
        return;
4383
0
    }
4384
4385
0
    if (msg_type == NetMsgType::TX) {
4386
0
        if (RejectIncomingTxs(pfrom)) {
4387
0
            LogDebug(BCLog::NET, "transaction sent in violation of protocol, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4388
0
            pfrom.fDisconnect = true;
4389
0
            return;
4390
0
        }
4391
4392
        // Stop processing the transaction early if we are still in IBD since we don't
4393
        // have enough information to validate it yet. Sending unsolicited transactions
4394
        // is not considered a protocol violation, so don't punish the peer.
4395
0
        if (m_chainman.IsInitialBlockDownload()) return;
4396
4397
0
        CTransactionRef ptx;
4398
0
        vRecv >> TX_WITH_WITNESS(ptx);
4399
4400
0
        const Txid& txid = ptx->GetHash();
4401
0
        const Wtxid& wtxid = ptx->GetWitnessHash();
4402
4403
0
        const uint256& hash = peer.m_wtxid_relay ? wtxid.ToUint256() : txid.ToUint256();
4404
0
        AddKnownTx(peer, hash);
4405
4406
0
        if (const auto num_broadcasted{m_tx_for_private_broadcast.Remove(ptx)}) {
4407
0
            LogDebug(BCLog::PRIVBROADCAST, "Received our privately broadcast transaction (txid=%s) from the "
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4408
0
                                           "network from %s; stopping private broadcast attempts",
4409
0
                     txid.ToString(), pfrom.LogPeer());
4410
0
            if (NUM_PRIVATE_BROADCAST_PER_TX > num_broadcasted.value()) {
4411
                // Not all of the initial NUM_PRIVATE_BROADCAST_PER_TX connections were needed.
4412
                // Tell CConnman it does not need to start the remaining ones.
4413
0
                m_connman.m_private_broadcast.NumToOpenSub(NUM_PRIVATE_BROADCAST_PER_TX - num_broadcasted.value());
4414
0
            }
4415
0
        }
4416
4417
0
        LOCK2(cs_main, m_tx_download_mutex);
Line
Count
Source
268
0
    UniqueLock criticalblock1(MaybeCheckNotHeld(cs1), #cs1, __FILE__, __LINE__); \
269
0
    UniqueLock criticalblock2(MaybeCheckNotHeld(cs2), #cs2, __FILE__, __LINE__)
4418
4419
0
        const auto& [should_validate, package_to_validate] = m_txdownloadman.ReceivedTx(pfrom.GetId(), ptx);
4420
0
        if (!should_validate) {
4421
0
            if (pfrom.HasPermission(NetPermissionFlags::ForceRelay)) {
4422
                // Always relay transactions received from peers with forcerelay
4423
                // permission, even if they were already in the mempool, allowing
4424
                // the node to function as a gateway for nodes hidden behind it.
4425
0
                if (!m_mempool.exists(txid)) {
4426
0
                    LogInfo("Not relaying non-mempool transaction %s (wtxid=%s) from forcerelay peer=%d\n",
Line
Count
Source
95
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
4427
0
                              txid.ToString(), wtxid.ToString(), pfrom.GetId());
4428
0
                } else {
4429
0
                    LogInfo("Force relaying tx %s (wtxid=%s) from peer=%d\n",
Line
Count
Source
95
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
4430
0
                              txid.ToString(), wtxid.ToString(), pfrom.GetId());
4431
0
                    InitiateTxBroadcastToAll(txid, wtxid);
4432
0
                }
4433
0
            }
4434
4435
0
            if (package_to_validate) {
4436
0
                const auto package_result{ProcessNewPackage(m_chainman.ActiveChainstate(), m_mempool, package_to_validate->m_txns, /*test_accept=*/false, /*client_maxfeerate=*/std::nullopt)};
4437
0
                LogDebug(BCLog::TXPACKAGES, "package evaluation for %s: %s\n", package_to_validate->ToString(),
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4438
0
                         package_result.m_state.IsValid() ? "package accepted" : "package rejected");
4439
0
                ProcessPackageResult(package_to_validate.value(), package_result);
4440
0
            }
4441
0
            return;
4442
0
        }
4443
4444
        // ReceivedTx should not be telling us to validate the tx and a package.
4445
0
        Assume(!package_to_validate.has_value());
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
4446
4447
0
        const MempoolAcceptResult result = m_chainman.ProcessTransaction(ptx);
4448
0
        const TxValidationState& state = result.m_state;
4449
4450
0
        if (result.m_result_type == MempoolAcceptResult::ResultType::VALID) {
4451
0
            ProcessValidTx(pfrom.GetId(), ptx, result.m_replaced_transactions);
4452
0
            pfrom.m_last_tx_time = GetTime<std::chrono::seconds>();
4453
0
        }
4454
0
        if (state.IsInvalid()) {
4455
0
            if (auto package_to_validate{ProcessInvalidTx(pfrom.GetId(), ptx, state, /*first_time_failure=*/true)}) {
4456
0
                const auto package_result{ProcessNewPackage(m_chainman.ActiveChainstate(), m_mempool, package_to_validate->m_txns, /*test_accept=*/false, /*client_maxfeerate=*/std::nullopt)};
4457
0
                LogDebug(BCLog::TXPACKAGES, "package evaluation for %s: %s\n", package_to_validate->ToString(),
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4458
0
                         package_result.m_state.IsValid() ? "package accepted" : "package rejected");
4459
0
                ProcessPackageResult(package_to_validate.value(), package_result);
4460
0
            }
4461
0
        }
4462
4463
0
        return;
4464
0
    }
4465
4466
0
    if (msg_type == NetMsgType::CMPCTBLOCK)
4467
0
    {
4468
        // Ignore cmpctblock received while importing
4469
0
        if (m_chainman.m_blockman.LoadingBlocks()) {
4470
0
            LogDebug(BCLog::NET, "Unexpected cmpctblock message received from peer %d\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4471
0
            return;
4472
0
        }
4473
4474
0
        CBlockHeaderAndShortTxIDs cmpctblock;
4475
0
        vRecv >> cmpctblock;
4476
4477
0
        bool received_new_header = false;
4478
0
        const auto blockhash = cmpctblock.header.GetHash();
4479
4480
0
        {
4481
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4482
4483
0
        const CBlockIndex* prev_block = m_chainman.m_blockman.LookupBlockIndex(cmpctblock.header.hashPrevBlock);
4484
0
        if (!prev_block) {
4485
            // Doesn't connect (or is genesis), instead of DoSing in AcceptBlockHeader, request deeper headers
4486
0
            if (!m_chainman.IsInitialBlockDownload()) {
4487
0
                MaybeSendGetHeaders(pfrom, GetLocator(m_chainman.m_best_header), peer);
4488
0
            }
4489
0
            return;
4490
0
        } else if (prev_block->nChainWork + GetBlockProof(cmpctblock.header) < GetAntiDoSWorkThreshold()) {
4491
            // If we get a low-work header in a compact block, we can ignore it.
4492
0
            LogDebug(BCLog::NET, "Ignoring low-work compact block from peer %d\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4493
0
            return;
4494
0
        }
4495
4496
0
        if (!m_chainman.m_blockman.LookupBlockIndex(blockhash)) {
4497
0
            received_new_header = true;
4498
0
        }
4499
0
        }
4500
4501
0
        const CBlockIndex *pindex = nullptr;
4502
0
        BlockValidationState state;
4503
0
        if (!m_chainman.ProcessNewBlockHeaders({{cmpctblock.header}}, /*min_pow_checked=*/true, state, &pindex)) {
4504
0
            if (state.IsInvalid()) {
4505
0
                MaybePunishNodeForBlock(pfrom.GetId(), state, /*via_compact_block=*/true, "invalid header via cmpctblock");
4506
0
                return;
4507
0
            }
4508
0
        }
4509
4510
        // If AcceptBlockHeader returned true, it set pindex
4511
0
        Assert(pindex);
Line
Count
Source
113
0
#define Assert(val) inline_assertion_check<true>(val, std::source_location::current(), #val)
4512
0
        if (received_new_header) {
4513
0
            LogBlockHeader(*pindex, pfrom, /*via_compact_block=*/true);
4514
0
        }
4515
4516
0
        bool fProcessBLOCKTXN = false;
4517
4518
        // If we end up treating this as a plain headers message, call that as well
4519
        // without cs_main.
4520
0
        bool fRevertToHeaderProcessing = false;
4521
4522
        // Keep a CBlock for "optimistic" compactblock reconstructions (see
4523
        // below)
4524
0
        std::shared_ptr<CBlock> pblock = std::make_shared<CBlock>();
4525
0
        bool fBlockReconstructed = false;
4526
4527
0
        {
4528
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4529
0
        UpdateBlockAvailability(pfrom.GetId(), pindex->GetBlockHash());
4530
4531
0
        CNodeState *nodestate = State(pfrom.GetId());
4532
4533
        // If this was a new header with more work than our tip, update the
4534
        // peer's last block announcement time
4535
0
        if (received_new_header && pindex->nChainWork > m_chainman.ActiveChain().Tip()->nChainWork) {
4536
0
            nodestate->m_last_block_announcement = GetTime();
4537
0
        }
4538
4539
0
        if (pindex->nStatus & BLOCK_HAVE_DATA) // Nothing to do here
4540
0
            return;
4541
4542
0
        auto range_flight = mapBlocksInFlight.equal_range(pindex->GetBlockHash());
4543
0
        size_t already_in_flight = std::distance(range_flight.first, range_flight.second);
4544
0
        bool requested_block_from_this_peer{false};
4545
4546
        // Multimap ensures ordering of outstanding requests. It's either empty or first in line.
4547
0
        bool first_in_flight = already_in_flight == 0 || (range_flight.first->second.first == pfrom.GetId());
4548
4549
0
        while (range_flight.first != range_flight.second) {
4550
0
            if (range_flight.first->second.first == pfrom.GetId()) {
4551
0
                requested_block_from_this_peer = true;
4552
0
                break;
4553
0
            }
4554
0
            range_flight.first++;
4555
0
        }
4556
4557
0
        if (pindex->nChainWork <= m_chainman.ActiveChain().Tip()->nChainWork || // We know something better
4558
0
                pindex->nTx != 0) { // We had this block at some point, but pruned it
4559
0
            if (requested_block_from_this_peer) {
4560
                // We requested this block for some reason, but our mempool will probably be useless
4561
                // so we just grab the block via normal getdata
4562
0
                std::vector<CInv> vInv(1);
4563
0
                vInv[0] = CInv(MSG_BLOCK | GetFetchFlags(peer), blockhash);
4564
0
                MakeAndPushMessage(pfrom, NetMsgType::GETDATA, vInv);
4565
0
            }
4566
0
            return;
4567
0
        }
4568
4569
        // If we're not close to tip yet, give up and let parallel block fetch work its magic
4570
0
        if (!already_in_flight && !CanDirectFetch()) {
4571
0
            return;
4572
0
        }
4573
4574
        // We want to be a bit conservative just to be extra careful about DoS
4575
        // possibilities in compact block processing...
4576
0
        if (pindex->nHeight <= m_chainman.ActiveChain().Height() + 2) {
4577
0
            if ((already_in_flight < MAX_CMPCTBLOCKS_INFLIGHT_PER_BLOCK && nodestate->vBlocksInFlight.size() < MAX_BLOCKS_IN_TRANSIT_PER_PEER) ||
4578
0
                 requested_block_from_this_peer) {
4579
0
                std::list<QueuedBlock>::iterator* queuedBlockIt = nullptr;
4580
0
                if (!BlockRequested(pfrom.GetId(), *pindex, &queuedBlockIt)) {
4581
0
                    if (!(*queuedBlockIt)->partialBlock)
4582
0
                        (*queuedBlockIt)->partialBlock.reset(new PartiallyDownloadedBlock(&m_mempool));
4583
0
                    else {
4584
                        // The block was already in flight using compact blocks from the same peer
4585
0
                        LogDebug(BCLog::NET, "Peer sent us compact block we were already syncing!\n");
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4586
0
                        return;
4587
0
                    }
4588
0
                }
4589
4590
0
                PartiallyDownloadedBlock& partialBlock = *(*queuedBlockIt)->partialBlock;
4591
0
                ReadStatus status = partialBlock.InitData(cmpctblock, vExtraTxnForCompact);
4592
0
                if (status == READ_STATUS_INVALID) {
4593
0
                    RemoveBlockRequest(pindex->GetBlockHash(), pfrom.GetId()); // Reset in-flight state in case Misbehaving does not result in a disconnect
4594
0
                    Misbehaving(peer, "invalid compact block");
4595
0
                    return;
4596
0
                } else if (status == READ_STATUS_FAILED) {
4597
0
                    if (first_in_flight)  {
4598
                        // Duplicate txindexes, the block is now in-flight, so just request it
4599
0
                        std::vector<CInv> vInv(1);
4600
0
                        vInv[0] = CInv(MSG_BLOCK | GetFetchFlags(peer), blockhash);
4601
0
                        MakeAndPushMessage(pfrom, NetMsgType::GETDATA, vInv);
4602
0
                    } else {
4603
                        // Give up for this peer and wait for other peer(s)
4604
0
                        RemoveBlockRequest(pindex->GetBlockHash(), pfrom.GetId());
4605
0
                    }
4606
0
                    return;
4607
0
                }
4608
4609
0
                BlockTransactionsRequest req;
4610
0
                for (size_t i = 0; i < cmpctblock.BlockTxCount(); i++) {
4611
0
                    if (!partialBlock.IsTxAvailable(i))
4612
0
                        req.indexes.push_back(i);
4613
0
                }
4614
0
                if (req.indexes.empty()) {
4615
0
                    fProcessBLOCKTXN = true;
4616
0
                } else if (first_in_flight) {
4617
                    // We will try to round-trip any compact blocks we get on failure,
4618
                    // as long as it's first...
4619
0
                    req.blockhash = pindex->GetBlockHash();
4620
0
                    MakeAndPushMessage(pfrom, NetMsgType::GETBLOCKTXN, req);
4621
0
                } else if (pfrom.m_bip152_highbandwidth_to &&
4622
0
                    (!pfrom.IsInboundConn() ||
4623
0
                    IsBlockRequestedFromOutbound(blockhash) ||
4624
0
                    already_in_flight < MAX_CMPCTBLOCKS_INFLIGHT_PER_BLOCK - 1)) {
4625
                    // ... or it's a hb relay peer and:
4626
                    // - peer is outbound, or
4627
                    // - we already have an outbound attempt in flight(so we'll take what we can get), or
4628
                    // - it's not the final parallel download slot (which we may reserve for first outbound)
4629
0
                    req.blockhash = pindex->GetBlockHash();
4630
0
                    MakeAndPushMessage(pfrom, NetMsgType::GETBLOCKTXN, req);
4631
0
                } else {
4632
                    // Give up for this peer and wait for other peer(s)
4633
0
                    RemoveBlockRequest(pindex->GetBlockHash(), pfrom.GetId());
4634
0
                }
4635
0
            } else {
4636
                // This block is either already in flight from a different
4637
                // peer, or this peer has too many blocks outstanding to
4638
                // download from.
4639
                // Optimistically try to reconstruct anyway since we might be
4640
                // able to without any round trips.
4641
0
                PartiallyDownloadedBlock tempBlock(&m_mempool);
4642
0
                ReadStatus status = tempBlock.InitData(cmpctblock, vExtraTxnForCompact);
4643
0
                if (status != READ_STATUS_OK) {
4644
                    // TODO: don't ignore failures
4645
0
                    return;
4646
0
                }
4647
0
                std::vector<CTransactionRef> dummy;
4648
0
                const CBlockIndex* prev_block{Assume(m_chainman.m_blockman.LookupBlockIndex(cmpctblock.header.hashPrevBlock))};
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
4649
0
                status = tempBlock.FillBlock(*pblock, dummy,
4650
0
                                             /*segwit_active=*/DeploymentActiveAfter(prev_block, m_chainman, Consensus::DEPLOYMENT_SEGWIT));
4651
0
                if (status == READ_STATUS_OK) {
4652
0
                    fBlockReconstructed = true;
4653
0
                }
4654
0
            }
4655
0
        } else {
4656
0
            if (requested_block_from_this_peer) {
4657
                // We requested this block, but its far into the future, so our
4658
                // mempool will probably be useless - request the block normally
4659
0
                std::vector<CInv> vInv(1);
4660
0
                vInv[0] = CInv(MSG_BLOCK | GetFetchFlags(peer), blockhash);
4661
0
                MakeAndPushMessage(pfrom, NetMsgType::GETDATA, vInv);
4662
0
                return;
4663
0
            } else {
4664
                // If this was an announce-cmpctblock, we want the same treatment as a header message
4665
0
                fRevertToHeaderProcessing = true;
4666
0
            }
4667
0
        }
4668
0
        } // cs_main
4669
4670
0
        if (fProcessBLOCKTXN) {
4671
0
            BlockTransactions txn;
4672
0
            txn.blockhash = blockhash;
4673
0
            return ProcessCompactBlockTxns(pfrom, peer, txn);
4674
0
        }
4675
4676
0
        if (fRevertToHeaderProcessing) {
4677
            // Headers received from HB compact block peers are permitted to be
4678
            // relayed before full validation (see BIP 152), so we don't want to disconnect
4679
            // the peer if the header turns out to be for an invalid block.
4680
            // Note that if a peer tries to build on an invalid chain, that
4681
            // will be detected and the peer will be disconnected/discouraged.
4682
0
            return ProcessHeadersMessage(pfrom, peer, {cmpctblock.header}, /*via_compact_block=*/true);
4683
0
        }
4684
4685
0
        if (fBlockReconstructed) {
4686
            // If we got here, we were able to optimistically reconstruct a
4687
            // block that is in flight from some other peer.
4688
0
            {
4689
0
                LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4690
0
                mapBlockSource.emplace(pblock->GetHash(), std::make_pair(pfrom.GetId(), false));
4691
0
            }
4692
            // Setting force_processing to true means that we bypass some of
4693
            // our anti-DoS protections in AcceptBlock, which filters
4694
            // unrequested blocks that might be trying to waste our resources
4695
            // (eg disk space). Because we only try to reconstruct blocks when
4696
            // we're close to caught up (via the CanDirectFetch() requirement
4697
            // above, combined with the behavior of not requesting blocks until
4698
            // we have a chain with at least the minimum chain work), and we ignore
4699
            // compact blocks with less work than our tip, it is safe to treat
4700
            // reconstructed compact blocks as having been requested.
4701
0
            ProcessBlock(pfrom, pblock, /*force_processing=*/true, /*min_pow_checked=*/true);
4702
0
            LOCK(cs_main); // hold cs_main for CBlockIndex::IsValid()
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4703
0
            if (pindex->IsValid(BLOCK_VALID_TRANSACTIONS)) {
4704
                // Clear download state for this block, which is in
4705
                // process from some other peer.  We do this after calling
4706
                // ProcessNewBlock so that a malleated cmpctblock announcement
4707
                // can't be used to interfere with block relay.
4708
0
                RemoveBlockRequest(pblock->GetHash(), std::nullopt);
4709
0
            }
4710
0
        }
4711
0
        return;
4712
0
    }
4713
4714
0
    if (msg_type == NetMsgType::BLOCKTXN)
4715
0
    {
4716
        // Ignore blocktxn received while importing
4717
0
        if (m_chainman.m_blockman.LoadingBlocks()) {
4718
0
            LogDebug(BCLog::NET, "Unexpected blocktxn message received from peer %d\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4719
0
            return;
4720
0
        }
4721
4722
0
        BlockTransactions resp;
4723
0
        vRecv >> resp;
4724
4725
0
        return ProcessCompactBlockTxns(pfrom, peer, resp);
4726
0
    }
4727
4728
0
    if (msg_type == NetMsgType::HEADERS)
4729
0
    {
4730
        // Ignore headers received while importing
4731
0
        if (m_chainman.m_blockman.LoadingBlocks()) {
4732
0
            LogDebug(BCLog::NET, "Unexpected headers message received from peer %d\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4733
0
            return;
4734
0
        }
4735
4736
0
        std::vector<CBlockHeader> headers;
4737
4738
        // Bypass the normal CBlock deserialization, as we don't want to risk deserializing 2000 full blocks.
4739
0
        unsigned int nCount = ReadCompactSize(vRecv);
4740
0
        if (nCount > m_opts.max_headers_result) {
4741
0
            Misbehaving(peer, strprintf("headers message size = %u", nCount));
Line
Count
Source
1172
0
#define strprintf tfm::format
4742
0
            return;
4743
0
        }
4744
0
        headers.resize(nCount);
4745
0
        for (unsigned int n = 0; n < nCount; n++) {
4746
0
            vRecv >> headers[n];
4747
0
            ReadCompactSize(vRecv); // ignore tx count; assume it is 0.
4748
0
        }
4749
4750
0
        ProcessHeadersMessage(pfrom, peer, std::move(headers), /*via_compact_block=*/false);
4751
4752
        // Check if the headers presync progress needs to be reported to validation.
4753
        // This needs to be done without holding the m_headers_presync_mutex lock.
4754
0
        if (m_headers_presync_should_signal.exchange(false)) {
4755
0
            HeadersPresyncStats stats;
4756
0
            {
4757
0
                LOCK(m_headers_presync_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4758
0
                auto it = m_headers_presync_stats.find(m_headers_presync_bestpeer);
4759
0
                if (it != m_headers_presync_stats.end()) stats = it->second;
4760
0
            }
4761
0
            if (stats.second) {
4762
0
                m_chainman.ReportHeadersPresync(stats.second->first, stats.second->second);
4763
0
            }
4764
0
        }
4765
4766
0
        return;
4767
0
    }
4768
4769
0
    if (msg_type == NetMsgType::BLOCK)
4770
0
    {
4771
        // Ignore block received while importing
4772
0
        if (m_chainman.m_blockman.LoadingBlocks()) {
4773
0
            LogDebug(BCLog::NET, "Unexpected block message received from peer %d\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4774
0
            return;
4775
0
        }
4776
4777
0
        std::shared_ptr<CBlock> pblock = std::make_shared<CBlock>();
4778
0
        vRecv >> TX_WITH_WITNESS(*pblock);
4779
4780
0
        LogDebug(BCLog::NET, "received block %s peer=%d\n", pblock->GetHash().ToString(), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4781
4782
0
        const CBlockIndex* prev_block{WITH_LOCK(m_chainman.GetMutex(), return m_chainman.m_blockman.LookupBlockIndex(pblock->hashPrevBlock))};
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
4783
4784
        // Check for possible mutation if it connects to something we know so we can check for DEPLOYMENT_SEGWIT being active
4785
0
        if (prev_block && IsBlockMutated(/*block=*/*pblock,
4786
0
                           /*check_witness_root=*/DeploymentActiveAfter(prev_block, m_chainman, Consensus::DEPLOYMENT_SEGWIT))) {
4787
0
            LogDebug(BCLog::NET, "Received mutated block from peer=%d\n", peer.m_id);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4788
0
            Misbehaving(peer, "mutated block");
4789
0
            WITH_LOCK(cs_main, RemoveBlockRequest(pblock->GetHash(), peer.m_id));
Line
Count
Source
297
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
4790
0
            return;
4791
0
        }
4792
4793
0
        bool forceProcessing = false;
4794
0
        const uint256 hash(pblock->GetHash());
4795
0
        bool min_pow_checked = false;
4796
0
        {
4797
0
            LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4798
            // Always process the block if we requested it, since we may
4799
            // need it even when it's not a candidate for a new best tip.
4800
0
            forceProcessing = IsBlockRequested(hash);
4801
0
            RemoveBlockRequest(hash, pfrom.GetId());
4802
            // mapBlockSource is only used for punishing peers and setting
4803
            // which peers send us compact blocks, so the race between here and
4804
            // cs_main in ProcessNewBlock is fine.
4805
0
            mapBlockSource.emplace(hash, std::make_pair(pfrom.GetId(), true));
4806
4807
            // Check claimed work on this block against our anti-dos thresholds.
4808
0
            if (prev_block && prev_block->nChainWork + GetBlockProof(*pblock) >= GetAntiDoSWorkThreshold()) {
4809
0
                min_pow_checked = true;
4810
0
            }
4811
0
        }
4812
0
        ProcessBlock(pfrom, pblock, forceProcessing, min_pow_checked);
4813
0
        return;
4814
0
    }
4815
4816
0
    if (msg_type == NetMsgType::GETADDR) {
4817
        // This asymmetric behavior for inbound and outbound connections was introduced
4818
        // to prevent a fingerprinting attack: an attacker can send specific fake addresses
4819
        // to users' AddrMan and later request them by sending getaddr messages.
4820
        // Making nodes which are behind NAT and can only make outgoing connections ignore
4821
        // the getaddr message mitigates the attack.
4822
0
        if (!pfrom.IsInboundConn()) {
4823
0
            LogDebug(BCLog::NET, "Ignoring \"getaddr\" from %s connection. peer=%d\n", pfrom.ConnectionTypeAsString(), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4824
0
            return;
4825
0
        }
4826
4827
        // Since this must be an inbound connection, SetupAddressRelay will
4828
        // never fail.
4829
0
        Assume(SetupAddressRelay(pfrom, peer));
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
4830
4831
        // Only send one GetAddr response per connection to reduce resource waste
4832
        // and discourage addr stamping of INV announcements.
4833
0
        if (peer.m_getaddr_recvd) {
4834
0
            LogDebug(BCLog::NET, "Ignoring repeated \"getaddr\". peer=%d\n", pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4835
0
            return;
4836
0
        }
4837
0
        peer.m_getaddr_recvd = true;
4838
4839
0
        peer.m_addrs_to_send.clear();
4840
0
        std::vector<CAddress> vAddr;
4841
0
        if (pfrom.HasPermission(NetPermissionFlags::Addr)) {
4842
0
            vAddr = m_connman.GetAddressesUnsafe(MAX_ADDR_TO_SEND, MAX_PCT_ADDR_TO_SEND, /*network=*/std::nullopt);
4843
0
        } else {
4844
0
            vAddr = m_connman.GetAddresses(pfrom, MAX_ADDR_TO_SEND, MAX_PCT_ADDR_TO_SEND);
4845
0
        }
4846
0
        for (const CAddress &addr : vAddr) {
4847
0
            PushAddress(peer, addr);
4848
0
        }
4849
0
        return;
4850
0
    }
4851
4852
0
    if (msg_type == NetMsgType::MEMPOOL) {
4853
        // Only process received mempool messages if we advertise NODE_BLOOM
4854
        // or if the peer has mempool permissions.
4855
0
        if (!(peer.m_our_services & NODE_BLOOM) && !pfrom.HasPermission(NetPermissionFlags::Mempool))
4856
0
        {
4857
0
            if (!pfrom.HasPermission(NetPermissionFlags::NoBan))
4858
0
            {
4859
0
                LogDebug(BCLog::NET, "mempool request with bloom filters disabled, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4860
0
                pfrom.fDisconnect = true;
4861
0
            }
4862
0
            return;
4863
0
        }
4864
4865
0
        if (m_connman.OutboundTargetReached(false) && !pfrom.HasPermission(NetPermissionFlags::Mempool))
4866
0
        {
4867
0
            if (!pfrom.HasPermission(NetPermissionFlags::NoBan))
4868
0
            {
4869
0
                LogDebug(BCLog::NET, "mempool request with bandwidth limit reached, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4870
0
                pfrom.fDisconnect = true;
4871
0
            }
4872
0
            return;
4873
0
        }
4874
4875
0
        if (auto tx_relay = peer.GetTxRelay(); tx_relay != nullptr) {
4876
0
            LOCK(tx_relay->m_tx_inventory_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4877
0
            tx_relay->m_send_mempool = true;
4878
0
        }
4879
0
        return;
4880
0
    }
4881
4882
0
    if (msg_type == NetMsgType::PING) {
4883
0
        if (pfrom.GetCommonVersion() > BIP0031_VERSION) {
4884
0
            uint64_t nonce = 0;
4885
0
            vRecv >> nonce;
4886
            // Echo the message back with the nonce. This allows for two useful features:
4887
            //
4888
            // 1) A remote node can quickly check if the connection is operational
4889
            // 2) Remote nodes can measure the latency of the network thread. If this node
4890
            //    is overloaded it won't respond to pings quickly and the remote node can
4891
            //    avoid sending us more work, like chain download requests.
4892
            //
4893
            // The nonce stops the remote getting confused between different pings: without
4894
            // it, if the remote node sends a ping once per second and this node takes 5
4895
            // seconds to respond to each, the 5th ping the remote sends would appear to
4896
            // return very quickly.
4897
0
            MakeAndPushMessage(pfrom, NetMsgType::PONG, nonce);
4898
0
        }
4899
0
        return;
4900
0
    }
4901
4902
0
    if (msg_type == NetMsgType::PONG) {
4903
0
        const auto ping_end = time_received;
4904
0
        uint64_t nonce = 0;
4905
0
        size_t nAvail = vRecv.in_avail();
4906
0
        bool bPingFinished = false;
4907
0
        std::string sProblem;
4908
4909
0
        if (nAvail >= sizeof(nonce)) {
4910
0
            vRecv >> nonce;
4911
4912
            // Only process pong message if there is an outstanding ping (old ping without nonce should never pong)
4913
0
            if (peer.m_ping_nonce_sent != 0) {
4914
0
                if (nonce == peer.m_ping_nonce_sent) {
4915
                    // Matching pong received, this ping is no longer outstanding
4916
0
                    bPingFinished = true;
4917
0
                    const auto ping_time = ping_end - peer.m_ping_start.load();
4918
0
                    if (ping_time.count() >= 0) {
4919
                        // Let connman know about this successful ping-pong
4920
0
                        pfrom.PongReceived(ping_time);
4921
0
                        if (pfrom.IsPrivateBroadcastConn()) {
4922
0
                            m_tx_for_private_broadcast.NodeConfirmedReception(pfrom.GetId());
4923
0
                            LogDebug(BCLog::PRIVBROADCAST, "Got a PONG (the transaction will probably reach the network), marking for disconnect, %s",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4924
0
                                     pfrom.LogPeer());
4925
0
                            pfrom.fDisconnect = true;
4926
0
                        }
4927
0
                    } else {
4928
                        // This should never happen
4929
0
                        sProblem = "Timing mishap";
4930
0
                    }
4931
0
                } else {
4932
                    // Nonce mismatches are normal when pings are overlapping
4933
0
                    sProblem = "Nonce mismatch";
4934
0
                    if (nonce == 0) {
4935
                        // This is most likely a bug in another implementation somewhere; cancel this ping
4936
0
                        bPingFinished = true;
4937
0
                        sProblem = "Nonce zero";
4938
0
                    }
4939
0
                }
4940
0
            } else {
4941
0
                sProblem = "Unsolicited pong without ping";
4942
0
            }
4943
0
        } else {
4944
            // This is most likely a bug in another implementation somewhere; cancel this ping
4945
0
            bPingFinished = true;
4946
0
            sProblem = "Short payload";
4947
0
        }
4948
4949
0
        if (!(sProblem.empty())) {
4950
0
            LogDebug(BCLog::NET, "pong peer=%d: %s, %x expected, %x received, %u bytes\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4951
0
                pfrom.GetId(),
4952
0
                sProblem,
4953
0
                peer.m_ping_nonce_sent,
4954
0
                nonce,
4955
0
                nAvail);
4956
0
        }
4957
0
        if (bPingFinished) {
4958
0
            peer.m_ping_nonce_sent = 0;
4959
0
        }
4960
0
        return;
4961
0
    }
4962
4963
0
    if (msg_type == NetMsgType::FILTERLOAD) {
4964
0
        if (!(peer.m_our_services & NODE_BLOOM)) {
4965
0
            LogDebug(BCLog::NET, "filterload received despite not offering bloom services, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4966
0
            pfrom.fDisconnect = true;
4967
0
            return;
4968
0
        }
4969
0
        CBloomFilter filter;
4970
0
        vRecv >> filter;
4971
4972
0
        if (!filter.IsWithinSizeConstraints())
4973
0
        {
4974
            // There is no excuse for sending a too-large filter
4975
0
            Misbehaving(peer, "too-large bloom filter");
4976
0
        } else if (auto tx_relay = peer.GetTxRelay(); tx_relay != nullptr) {
4977
0
            {
4978
0
                LOCK(tx_relay->m_bloom_filter_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
4979
0
                tx_relay->m_bloom_filter.reset(new CBloomFilter(filter));
4980
0
                tx_relay->m_relay_txs = true;
4981
0
            }
4982
0
            pfrom.m_bloom_filter_loaded = true;
4983
0
            pfrom.m_relays_txs = true;
4984
0
        }
4985
0
        return;
4986
0
    }
4987
4988
0
    if (msg_type == NetMsgType::FILTERADD) {
4989
0
        if (!(peer.m_our_services & NODE_BLOOM)) {
4990
0
            LogDebug(BCLog::NET, "filteradd received despite not offering bloom services, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
4991
0
            pfrom.fDisconnect = true;
4992
0
            return;
4993
0
        }
4994
0
        std::vector<unsigned char> vData;
4995
0
        vRecv >> vData;
4996
4997
        // Nodes must NEVER send a data item > MAX_SCRIPT_ELEMENT_SIZE bytes (the max size for a script data object,
4998
        // and thus, the maximum size any matched object can have) in a filteradd message
4999
0
        bool bad = false;
5000
0
        if (vData.size() > MAX_SCRIPT_ELEMENT_SIZE) {
5001
0
            bad = true;
5002
0
        } else if (auto tx_relay = peer.GetTxRelay(); tx_relay != nullptr) {
5003
0
            LOCK(tx_relay->m_bloom_filter_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5004
0
            if (tx_relay->m_bloom_filter) {
5005
0
                tx_relay->m_bloom_filter->insert(vData);
5006
0
            } else {
5007
0
                bad = true;
5008
0
            }
5009
0
        }
5010
0
        if (bad) {
5011
0
            Misbehaving(peer, "bad filteradd message");
5012
0
        }
5013
0
        return;
5014
0
    }
5015
5016
0
    if (msg_type == NetMsgType::FILTERCLEAR) {
5017
0
        if (!(peer.m_our_services & NODE_BLOOM)) {
5018
0
            LogDebug(BCLog::NET, "filterclear received despite not offering bloom services, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5019
0
            pfrom.fDisconnect = true;
5020
0
            return;
5021
0
        }
5022
0
        auto tx_relay = peer.GetTxRelay();
5023
0
        if (!tx_relay) return;
5024
5025
0
        {
5026
0
            LOCK(tx_relay->m_bloom_filter_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5027
0
            tx_relay->m_bloom_filter = nullptr;
5028
0
            tx_relay->m_relay_txs = true;
5029
0
        }
5030
0
        pfrom.m_bloom_filter_loaded = false;
5031
0
        pfrom.m_relays_txs = true;
5032
0
        return;
5033
0
    }
5034
5035
0
    if (msg_type == NetMsgType::FEEFILTER) {
5036
0
        CAmount newFeeFilter = 0;
5037
0
        vRecv >> newFeeFilter;
5038
0
        if (MoneyRange(newFeeFilter)) {
5039
0
            if (auto tx_relay = peer.GetTxRelay(); tx_relay != nullptr) {
5040
0
                tx_relay->m_fee_filter_received = newFeeFilter;
5041
0
            }
5042
0
            LogDebug(BCLog::NET, "received: feefilter of %s from peer=%d\n", CFeeRate(newFeeFilter).ToString(), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5043
0
        }
5044
0
        return;
5045
0
    }
5046
5047
0
    if (msg_type == NetMsgType::GETCFILTERS) {
5048
0
        ProcessGetCFilters(pfrom, peer, vRecv);
5049
0
        return;
5050
0
    }
5051
5052
0
    if (msg_type == NetMsgType::GETCFHEADERS) {
5053
0
        ProcessGetCFHeaders(pfrom, peer, vRecv);
5054
0
        return;
5055
0
    }
5056
5057
0
    if (msg_type == NetMsgType::GETCFCHECKPT) {
5058
0
        ProcessGetCFCheckPt(pfrom, peer, vRecv);
5059
0
        return;
5060
0
    }
5061
5062
0
    if (msg_type == NetMsgType::NOTFOUND) {
5063
0
        std::vector<CInv> vInv;
5064
0
        vRecv >> vInv;
5065
0
        std::vector<GenTxid> tx_invs;
5066
0
        if (vInv.size() <= node::MAX_PEER_TX_ANNOUNCEMENTS + MAX_BLOCKS_IN_TRANSIT_PER_PEER) {
5067
0
            for (CInv &inv : vInv) {
5068
0
                if (inv.IsGenTxMsg()) {
5069
0
                    tx_invs.emplace_back(ToGenTxid(inv));
5070
0
                }
5071
0
            }
5072
0
        }
5073
0
        LOCK(m_tx_download_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5074
0
        m_txdownloadman.ReceivedNotFound(pfrom.GetId(), tx_invs);
5075
0
        return;
5076
0
    }
5077
5078
    // Ignore unknown message types for extensibility
5079
0
    LogDebug(BCLog::NET, "Unknown message type \"%s\" from peer=%d", SanitizeString(msg_type), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5080
0
    return;
5081
0
}
5082
5083
bool PeerManagerImpl::MaybeDiscourageAndDisconnect(CNode& pnode, Peer& peer)
5084
0
{
5085
0
    {
5086
0
        LOCK(peer.m_misbehavior_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5087
5088
        // There's nothing to do if the m_should_discourage flag isn't set
5089
0
        if (!peer.m_should_discourage) return false;
5090
5091
0
        peer.m_should_discourage = false;
5092
0
    } // peer.m_misbehavior_mutex
5093
5094
0
    if (pnode.HasPermission(NetPermissionFlags::NoBan)) {
5095
        // We never disconnect or discourage peers for bad behavior if they have NetPermissionFlags::NoBan permission
5096
0
        LogWarning("Not punishing noban peer %d!", peer.m_id);
Line
Count
Source
96
0
#define LogWarning(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Warning, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
5097
0
        return false;
5098
0
    }
5099
5100
0
    if (pnode.IsManualConn()) {
5101
        // We never disconnect or discourage manual peers for bad behavior
5102
0
        LogWarning("Not punishing manually connected peer %d!", peer.m_id);
Line
Count
Source
96
0
#define LogWarning(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Warning, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
5103
0
        return false;
5104
0
    }
5105
5106
0
    if (pnode.addr.IsLocal()) {
5107
        // We disconnect local peers for bad behavior but don't discourage (since that would discourage
5108
        // all peers on the same local address)
5109
0
        LogDebug(BCLog::NET, "Warning: disconnecting but not discouraging %s peer %d!\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5110
0
                 pnode.m_inbound_onion ? "inbound onion" : "local", peer.m_id);
5111
0
        pnode.fDisconnect = true;
5112
0
        return true;
5113
0
    }
5114
5115
    // Normal case: Disconnect the peer and discourage all nodes sharing the address
5116
0
    LogDebug(BCLog::NET, "Disconnecting and discouraging peer %d!\n", peer.m_id);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5117
0
    if (m_banman) m_banman->Discourage(pnode.addr);
5118
0
    m_connman.DisconnectNode(pnode.addr);
5119
0
    return true;
5120
0
}
5121
5122
bool PeerManagerImpl::ProcessMessages(CNode& node, std::atomic<bool>& interruptMsgProc)
5123
0
{
5124
0
    AssertLockNotHeld(m_tx_download_mutex);
Line
Count
Source
147
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
5125
0
    AssertLockHeld(g_msgproc_mutex);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
5126
5127
0
    PeerRef maybe_peer{GetPeerRef(node.GetId())};
5128
0
    if (maybe_peer == nullptr) return false;
5129
0
    Peer& peer{*maybe_peer};
5130
5131
    // For outbound connections, ensure that the initial VERSION message
5132
    // has been sent first before processing any incoming messages
5133
0
    if (!node.IsInboundConn() && !peer.m_outbound_version_message_sent) return false;
5134
5135
0
    {
5136
0
        LOCK(peer.m_getdata_requests_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5137
0
        if (!peer.m_getdata_requests.empty()) {
5138
0
            ProcessGetData(node, peer, interruptMsgProc);
5139
0
        }
5140
0
    }
5141
5142
0
    const bool processed_orphan = ProcessOrphanTx(peer);
5143
5144
0
    if (node.fDisconnect)
5145
0
        return false;
5146
5147
0
    if (processed_orphan) return true;
5148
5149
    // this maintains the order of responses
5150
    // and prevents m_getdata_requests to grow unbounded
5151
0
    {
5152
0
        LOCK(peer.m_getdata_requests_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5153
0
        if (!peer.m_getdata_requests.empty()) return true;
5154
0
    }
5155
5156
    // Don't bother if send buffer is too full to respond anyway
5157
0
    if (node.fPauseSend) return false;
5158
5159
0
    auto poll_result{node.PollMessage()};
5160
0
    if (!poll_result) {
5161
        // No message to process
5162
0
        return false;
5163
0
    }
5164
5165
0
    CNetMessage& msg{poll_result->first};
5166
0
    bool fMoreWork = poll_result->second;
5167
5168
0
    TRACEPOINT(net, inbound_message,
5169
0
        node.GetId(),
5170
0
        node.m_addr_name.c_str(),
5171
0
        node.ConnectionTypeAsString().c_str(),
5172
0
        msg.m_type.c_str(),
5173
0
        msg.m_recv.size(),
5174
0
        msg.m_recv.data()
5175
0
    );
5176
5177
0
    if (m_opts.capture_messages) {
5178
0
        CaptureMessage(node.addr, msg.m_type, MakeUCharSpan(msg.m_recv), /*is_incoming=*/true);
5179
0
    }
5180
5181
0
    try {
5182
0
        ProcessMessage(peer, node, msg.m_type, msg.m_recv, msg.m_time, interruptMsgProc);
5183
0
        if (interruptMsgProc) return false;
5184
0
        {
5185
0
            LOCK(peer.m_getdata_requests_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5186
0
            if (!peer.m_getdata_requests.empty()) fMoreWork = true;
5187
0
        }
5188
        // Does this peer have an orphan ready to reconsider?
5189
        // (Note: we may have provided a parent for an orphan provided
5190
        //  by another peer that was already processed; in that case,
5191
        //  the extra work may not be noticed, possibly resulting in an
5192
        //  unnecessary 100ms delay)
5193
0
        LOCK(m_tx_download_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5194
0
        if (m_txdownloadman.HaveMoreWork(peer.m_id)) fMoreWork = true;
5195
0
    } catch (const std::exception& e) {
5196
0
        LogDebug(BCLog::NET, "%s(%s, %u bytes): Exception '%s' (%s) caught\n", __func__, SanitizeString(msg.m_type), msg.m_message_size, e.what(), typeid(e).name());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5197
0
    } catch (...) {
5198
0
        LogDebug(BCLog::NET, "%s(%s, %u bytes): Unknown exception caught\n", __func__, SanitizeString(msg.m_type), msg.m_message_size);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5199
0
    }
5200
5201
0
    return fMoreWork;
5202
0
}
5203
5204
void PeerManagerImpl::ConsiderEviction(CNode& pto, Peer& peer, std::chrono::seconds time_in_seconds)
5205
0
{
5206
0
    AssertLockHeld(cs_main);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
5207
5208
0
    CNodeState &state = *State(pto.GetId());
5209
5210
0
    if (!state.m_chain_sync.m_protect && pto.IsOutboundOrBlockRelayConn() && state.fSyncStarted) {
5211
        // This is an outbound peer subject to disconnection if they don't
5212
        // announce a block with as much work as the current tip within
5213
        // CHAIN_SYNC_TIMEOUT + HEADERS_RESPONSE_TIME seconds (note: if
5214
        // their chain has more work than ours, we should sync to it,
5215
        // unless it's invalid, in which case we should find that out and
5216
        // disconnect from them elsewhere).
5217
0
        if (state.pindexBestKnownBlock != nullptr && state.pindexBestKnownBlock->nChainWork >= m_chainman.ActiveChain().Tip()->nChainWork) {
5218
            // The outbound peer has sent us a block with at least as much work as our current tip, so reset the timeout if it was set
5219
0
            if (state.m_chain_sync.m_timeout != 0s) {
5220
0
                state.m_chain_sync.m_timeout = 0s;
5221
0
                state.m_chain_sync.m_work_header = nullptr;
5222
0
                state.m_chain_sync.m_sent_getheaders = false;
5223
0
            }
5224
0
        } else if (state.m_chain_sync.m_timeout == 0s || (state.m_chain_sync.m_work_header != nullptr && state.pindexBestKnownBlock != nullptr && state.pindexBestKnownBlock->nChainWork >= state.m_chain_sync.m_work_header->nChainWork)) {
5225
            // At this point we know that the outbound peer has either never sent us a block/header or they have, but its tip is behind ours
5226
            // AND
5227
            // we are noticing this for the first time (m_timeout is 0)
5228
            // OR we noticed this at some point within the last CHAIN_SYNC_TIMEOUT + HEADERS_RESPONSE_TIME seconds and set a timeout
5229
            // for them, they caught up to our tip at the time of setting the timer but not to our current one (we've also advanced).
5230
            // Either way, set a new timeout based on our current tip.
5231
0
            state.m_chain_sync.m_timeout = time_in_seconds + CHAIN_SYNC_TIMEOUT;
5232
0
            state.m_chain_sync.m_work_header = m_chainman.ActiveChain().Tip();
5233
0
            state.m_chain_sync.m_sent_getheaders = false;
5234
0
        } else if (state.m_chain_sync.m_timeout > 0s && time_in_seconds > state.m_chain_sync.m_timeout) {
5235
            // No evidence yet that our peer has synced to a chain with work equal to that
5236
            // of our tip, when we first detected it was behind. Send a single getheaders
5237
            // message to give the peer a chance to update us.
5238
0
            if (state.m_chain_sync.m_sent_getheaders) {
5239
                // They've run out of time to catch up!
5240
0
                LogInfo("Outbound peer has old chain, best known block = %s, %s", state.pindexBestKnownBlock != nullptr ? state.pindexBestKnownBlock->GetBlockHash().ToString() : "<none>", pto.DisconnectMsg());
Line
Count
Source
95
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
5241
0
                pto.fDisconnect = true;
5242
0
            } else {
5243
0
                assert(state.m_chain_sync.m_work_header);
5244
                // Here, we assume that the getheaders message goes out,
5245
                // because it'll either go out or be skipped because of a
5246
                // getheaders in-flight already, in which case the peer should
5247
                // still respond to us with a sufficiently high work chain tip.
5248
0
                MaybeSendGetHeaders(pto,
5249
0
                        GetLocator(state.m_chain_sync.m_work_header->pprev),
5250
0
                        peer);
5251
0
                LogDebug(BCLog::NET, "sending getheaders to outbound peer=%d to verify chain work (current best known block:%s, benchmark blockhash: %s)\n", pto.GetId(), state.pindexBestKnownBlock != nullptr ? state.pindexBestKnownBlock->GetBlockHash().ToString() : "<none>", state.m_chain_sync.m_work_header->GetBlockHash().ToString());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5252
0
                state.m_chain_sync.m_sent_getheaders = true;
5253
                // Bump the timeout to allow a response, which could clear the timeout
5254
                // (if the response shows the peer has synced), reset the timeout (if
5255
                // the peer syncs to the required work but not to our tip), or result
5256
                // in disconnect (if we advance to the timeout and pindexBestKnownBlock
5257
                // has not sufficiently progressed)
5258
0
                state.m_chain_sync.m_timeout = time_in_seconds + HEADERS_RESPONSE_TIME;
5259
0
            }
5260
0
        }
5261
0
    }
5262
0
}
5263
5264
void PeerManagerImpl::EvictExtraOutboundPeers(std::chrono::seconds now)
5265
0
{
5266
    // If we have any extra block-relay-only peers, disconnect the youngest unless
5267
    // it's given us a block -- in which case, compare with the second-youngest, and
5268
    // out of those two, disconnect the peer who least recently gave us a block.
5269
    // The youngest block-relay-only peer would be the extra peer we connected
5270
    // to temporarily in order to sync our tip; see net.cpp.
5271
    // Note that we use higher nodeid as a measure for most recent connection.
5272
0
    if (m_connman.GetExtraBlockRelayCount() > 0) {
5273
0
        std::pair<NodeId, std::chrono::seconds> youngest_peer{-1, 0}, next_youngest_peer{-1, 0};
5274
5275
0
        m_connman.ForEachNode([&](CNode* pnode) {
5276
0
            if (!pnode->IsBlockOnlyConn() || pnode->fDisconnect) return;
5277
0
            if (pnode->GetId() > youngest_peer.first) {
5278
0
                next_youngest_peer = youngest_peer;
5279
0
                youngest_peer.first = pnode->GetId();
5280
0
                youngest_peer.second = pnode->m_last_block_time;
5281
0
            }
5282
0
        });
5283
0
        NodeId to_disconnect = youngest_peer.first;
5284
0
        if (youngest_peer.second > next_youngest_peer.second) {
5285
            // Our newest block-relay-only peer gave us a block more recently;
5286
            // disconnect our second youngest.
5287
0
            to_disconnect = next_youngest_peer.first;
5288
0
        }
5289
0
        m_connman.ForNode(to_disconnect, [&](CNode* pnode) EXCLUSIVE_LOCKS_REQUIRED(::cs_main) {
5290
0
            AssertLockHeld(::cs_main);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
5291
            // Make sure we're not getting a block right now, and that
5292
            // we've been connected long enough for this eviction to happen
5293
            // at all.
5294
            // Note that we only request blocks from a peer if we learn of a
5295
            // valid headers chain with at least as much work as our tip.
5296
0
            CNodeState *node_state = State(pnode->GetId());
5297
0
            if (node_state == nullptr ||
5298
0
                (now - pnode->m_connected >= MINIMUM_CONNECT_TIME && node_state->vBlocksInFlight.empty())) {
5299
0
                pnode->fDisconnect = true;
5300
0
                LogDebug(BCLog::NET, "disconnecting extra block-relay-only peer=%d (last block received at time %d)\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5301
0
                         pnode->GetId(), count_seconds(pnode->m_last_block_time));
5302
0
                return true;
5303
0
            } else {
5304
0
                LogDebug(BCLog::NET, "keeping block-relay-only peer=%d chosen for eviction (connect time: %d, blocks_in_flight: %d)\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5305
0
                         pnode->GetId(), count_seconds(pnode->m_connected), node_state->vBlocksInFlight.size());
5306
0
            }
5307
0
            return false;
5308
0
        });
5309
0
    }
5310
5311
    // Check whether we have too many outbound-full-relay peers
5312
0
    if (m_connman.GetExtraFullOutboundCount() > 0) {
5313
        // If we have more outbound-full-relay peers than we target, disconnect one.
5314
        // Pick the outbound-full-relay peer that least recently announced
5315
        // us a new block, with ties broken by choosing the more recent
5316
        // connection (higher node id)
5317
        // Protect peers from eviction if we don't have another connection
5318
        // to their network, counting both outbound-full-relay and manual peers.
5319
0
        NodeId worst_peer = -1;
5320
0
        int64_t oldest_block_announcement = std::numeric_limits<int64_t>::max();
5321
5322
0
        m_connman.ForEachNode([&](CNode* pnode) EXCLUSIVE_LOCKS_REQUIRED(::cs_main, m_connman.GetNodesMutex()) {
5323
0
            AssertLockHeld(::cs_main);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
5324
5325
            // Only consider outbound-full-relay peers that are not already
5326
            // marked for disconnection
5327
0
            if (!pnode->IsFullOutboundConn() || pnode->fDisconnect) return;
5328
0
            CNodeState *state = State(pnode->GetId());
5329
0
            if (state == nullptr) return; // shouldn't be possible, but just in case
5330
            // Don't evict our protected peers
5331
0
            if (state->m_chain_sync.m_protect) return;
5332
            // If this is the only connection on a particular network that is
5333
            // OUTBOUND_FULL_RELAY or MANUAL, protect it.
5334
0
            if (!m_connman.MultipleManualOrFullOutboundConns(pnode->addr.GetNetwork())) return;
5335
0
            if (state->m_last_block_announcement < oldest_block_announcement || (state->m_last_block_announcement == oldest_block_announcement && pnode->GetId() > worst_peer)) {
5336
0
                worst_peer = pnode->GetId();
5337
0
                oldest_block_announcement = state->m_last_block_announcement;
5338
0
            }
5339
0
        });
5340
0
        if (worst_peer != -1) {
5341
0
            bool disconnected = m_connman.ForNode(worst_peer, [&](CNode* pnode) EXCLUSIVE_LOCKS_REQUIRED(::cs_main) {
5342
0
                AssertLockHeld(::cs_main);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
5343
5344
                // Only disconnect a peer that has been connected to us for
5345
                // some reasonable fraction of our check-frequency, to give
5346
                // it time for new information to have arrived.
5347
                // Also don't disconnect any peer we're trying to download a
5348
                // block from.
5349
0
                CNodeState &state = *State(pnode->GetId());
5350
0
                if (now - pnode->m_connected > MINIMUM_CONNECT_TIME && state.vBlocksInFlight.empty()) {
5351
0
                    LogDebug(BCLog::NET, "disconnecting extra outbound peer=%d (last block announcement received at time %d)\n", pnode->GetId(), oldest_block_announcement);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5352
0
                    pnode->fDisconnect = true;
5353
0
                    return true;
5354
0
                } else {
5355
0
                    LogDebug(BCLog::NET, "keeping outbound peer=%d chosen for eviction (connect time: %d, blocks_in_flight: %d)\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5356
0
                             pnode->GetId(), count_seconds(pnode->m_connected), state.vBlocksInFlight.size());
5357
0
                    return false;
5358
0
                }
5359
0
            });
5360
0
            if (disconnected) {
5361
                // If we disconnected an extra peer, that means we successfully
5362
                // connected to at least one peer after the last time we
5363
                // detected a stale tip. Don't try any more extra peers until
5364
                // we next detect a stale tip, to limit the load we put on the
5365
                // network from these extra connections.
5366
0
                m_connman.SetTryNewOutboundPeer(false);
5367
0
            }
5368
0
        }
5369
0
    }
5370
0
}
5371
5372
void PeerManagerImpl::CheckForStaleTipAndEvictPeers()
5373
0
{
5374
0
    LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5375
5376
0
    auto now{GetTime<std::chrono::seconds>()};
5377
5378
0
    EvictExtraOutboundPeers(now);
5379
5380
0
    if (now > m_stale_tip_check_time) {
5381
        // Check whether our tip is stale, and if so, allow using an extra
5382
        // outbound peer
5383
0
        if (!m_chainman.m_blockman.LoadingBlocks() && m_connman.GetNetworkActive() && m_connman.GetUseAddrmanOutgoing() && TipMayBeStale()) {
5384
0
            LogInfo("Potential stale tip detected, will try using extra outbound peer (last tip update: %d seconds ago)\n",
Line
Count
Source
95
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
5385
0
                      count_seconds(now - m_last_tip_update.load()));
5386
0
            m_connman.SetTryNewOutboundPeer(true);
5387
0
        } else if (m_connman.GetTryNewOutboundPeer()) {
5388
0
            m_connman.SetTryNewOutboundPeer(false);
5389
0
        }
5390
0
        m_stale_tip_check_time = now + STALE_CHECK_INTERVAL;
5391
0
    }
5392
5393
0
    if (!m_initial_sync_finished && CanDirectFetch()) {
5394
0
        m_connman.StartExtraBlockRelayPeers();
5395
0
        m_initial_sync_finished = true;
5396
0
    }
5397
0
}
5398
5399
void PeerManagerImpl::MaybeSendPing(CNode& node_to, Peer& peer, std::chrono::microseconds now)
5400
0
{
5401
0
    if (m_connman.ShouldRunInactivityChecks(node_to, std::chrono::duration_cast<std::chrono::seconds>(now)) &&
5402
0
        peer.m_ping_nonce_sent &&
5403
0
        now > peer.m_ping_start.load() + TIMEOUT_INTERVAL)
5404
0
    {
5405
        // The ping timeout is using mocktime. To disable the check during
5406
        // testing, increase -peertimeout.
5407
0
        LogDebug(BCLog::NET, "ping timeout: %fs, %s", 0.000001 * count_microseconds(now - peer.m_ping_start.load()), node_to.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5408
0
        node_to.fDisconnect = true;
5409
0
        return;
5410
0
    }
5411
5412
0
    bool pingSend = false;
5413
5414
0
    if (peer.m_ping_queued) {
5415
        // RPC ping request by user
5416
0
        pingSend = true;
5417
0
    }
5418
5419
0
    if (peer.m_ping_nonce_sent == 0 && now > peer.m_ping_start.load() + PING_INTERVAL) {
5420
        // Ping automatically sent as a latency probe & keepalive.
5421
0
        pingSend = true;
5422
0
    }
5423
5424
0
    if (pingSend) {
5425
0
        uint64_t nonce;
5426
0
        do {
5427
0
            nonce = FastRandomContext().rand64();
5428
0
        } while (nonce == 0);
5429
0
        peer.m_ping_queued = false;
5430
0
        peer.m_ping_start = now;
5431
0
        if (node_to.GetCommonVersion() > BIP0031_VERSION) {
5432
0
            peer.m_ping_nonce_sent = nonce;
5433
0
            MakeAndPushMessage(node_to, NetMsgType::PING, nonce);
5434
0
        } else {
5435
            // Peer is too old to support ping message type with nonce, pong will never arrive.
5436
0
            peer.m_ping_nonce_sent = 0;
5437
0
            MakeAndPushMessage(node_to, NetMsgType::PING);
5438
0
        }
5439
0
    }
5440
0
}
5441
5442
void PeerManagerImpl::MaybeSendAddr(CNode& node, Peer& peer, std::chrono::microseconds current_time)
5443
0
{
5444
    // Nothing to do for non-address-relay peers
5445
0
    if (!peer.m_addr_relay_enabled) return;
5446
5447
0
    LOCK(peer.m_addr_send_times_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5448
    // Periodically advertise our local address to the peer.
5449
0
    if (fListen && !m_chainman.IsInitialBlockDownload() &&
5450
0
        peer.m_next_local_addr_send < current_time) {
5451
        // If we've sent before, clear the bloom filter for the peer, so that our
5452
        // self-announcement will actually go out.
5453
        // This might be unnecessary if the bloom filter has already rolled
5454
        // over since our last self-announcement, but there is only a small
5455
        // bandwidth cost that we can incur by doing this (which happens
5456
        // once a day on average).
5457
0
        if (peer.m_next_local_addr_send != 0us) {
5458
0
            peer.m_addr_known->reset();
5459
0
        }
5460
0
        if (std::optional<CService> local_service = GetLocalAddrForPeer(node)) {
5461
0
            CAddress local_addr{*local_service, peer.m_our_services, Now<NodeSeconds>()};
5462
0
            if (peer.m_next_local_addr_send == 0us) {
5463
                // Send the initial self-announcement in its own message. This makes sure
5464
                // rate-limiting with limited start-tokens doesn't ignore it if the first
5465
                // message ends up containing multiple addresses.
5466
0
                if (IsAddrCompatible(peer, local_addr)) {
5467
0
                    std::vector<CAddress> self_announcement{local_addr};
5468
0
                    if (peer.m_wants_addrv2) {
5469
0
                        MakeAndPushMessage(node, NetMsgType::ADDRV2, CAddress::V2_NETWORK(self_announcement));
5470
0
                    } else {
5471
0
                        MakeAndPushMessage(node, NetMsgType::ADDR, CAddress::V1_NETWORK(self_announcement));
5472
0
                    }
5473
0
                }
5474
0
            } else {
5475
                // All later self-announcements are sent together with the other addresses.
5476
0
                PushAddress(peer, local_addr);
5477
0
            }
5478
0
        }
5479
0
        peer.m_next_local_addr_send = current_time + m_rng.rand_exp_duration(AVG_LOCAL_ADDRESS_BROADCAST_INTERVAL);
5480
0
    }
5481
5482
    // We sent an `addr` message to this peer recently. Nothing more to do.
5483
0
    if (current_time <= peer.m_next_addr_send) return;
5484
5485
0
    peer.m_next_addr_send = current_time + m_rng.rand_exp_duration(AVG_ADDRESS_BROADCAST_INTERVAL);
5486
5487
0
    if (!Assume(peer.m_addrs_to_send.size() <= MAX_ADDR_TO_SEND)) {
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
5488
        // Should be impossible since we always check size before adding to
5489
        // m_addrs_to_send. Recover by trimming the vector.
5490
0
        peer.m_addrs_to_send.resize(MAX_ADDR_TO_SEND);
5491
0
    }
5492
5493
    // Remove addr records that the peer already knows about, and add new
5494
    // addrs to the m_addr_known filter on the same pass.
5495
0
    auto addr_already_known = [&peer](const CAddress& addr) EXCLUSIVE_LOCKS_REQUIRED(g_msgproc_mutex) {
5496
0
        bool ret = peer.m_addr_known->contains(addr.GetKey());
5497
0
        if (!ret) peer.m_addr_known->insert(addr.GetKey());
5498
0
        return ret;
5499
0
    };
5500
0
    peer.m_addrs_to_send.erase(std::remove_if(peer.m_addrs_to_send.begin(), peer.m_addrs_to_send.end(), addr_already_known),
5501
0
                           peer.m_addrs_to_send.end());
5502
5503
    // No addr messages to send
5504
0
    if (peer.m_addrs_to_send.empty()) return;
5505
5506
0
    if (peer.m_wants_addrv2) {
5507
0
        MakeAndPushMessage(node, NetMsgType::ADDRV2, CAddress::V2_NETWORK(peer.m_addrs_to_send));
5508
0
    } else {
5509
0
        MakeAndPushMessage(node, NetMsgType::ADDR, CAddress::V1_NETWORK(peer.m_addrs_to_send));
5510
0
    }
5511
0
    peer.m_addrs_to_send.clear();
5512
5513
    // we only send the big addr message once
5514
0
    if (peer.m_addrs_to_send.capacity() > 40) {
5515
0
        peer.m_addrs_to_send.shrink_to_fit();
5516
0
    }
5517
0
}
5518
5519
void PeerManagerImpl::MaybeSendSendHeaders(CNode& node, Peer& peer)
5520
0
{
5521
    // Delay sending SENDHEADERS (BIP 130) until we're done with an
5522
    // initial-headers-sync with this peer. Receiving headers announcements for
5523
    // new blocks while trying to sync their headers chain is problematic,
5524
    // because of the state tracking done.
5525
0
    if (!peer.m_sent_sendheaders && node.GetCommonVersion() >= SENDHEADERS_VERSION) {
5526
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5527
0
        CNodeState &state = *State(node.GetId());
5528
0
        if (state.pindexBestKnownBlock != nullptr &&
5529
0
                state.pindexBestKnownBlock->nChainWork > m_chainman.MinimumChainWork()) {
5530
            // Tell our peer we prefer to receive headers rather than inv's
5531
            // We send this to non-NODE NETWORK peers as well, because even
5532
            // non-NODE NETWORK peers can announce blocks (such as pruning
5533
            // nodes)
5534
0
            MakeAndPushMessage(node, NetMsgType::SENDHEADERS);
5535
0
            peer.m_sent_sendheaders = true;
5536
0
        }
5537
0
    }
5538
0
}
5539
5540
void PeerManagerImpl::MaybeSendFeefilter(CNode& pto, Peer& peer, std::chrono::microseconds current_time)
5541
0
{
5542
0
    if (m_opts.ignore_incoming_txs) return;
5543
0
    if (pto.GetCommonVersion() < FEEFILTER_VERSION) return;
5544
    // peers with the forcerelay permission should not filter txs to us
5545
0
    if (pto.HasPermission(NetPermissionFlags::ForceRelay)) return;
5546
    // Don't send feefilter messages to outbound block-relay-only peers since they should never announce
5547
    // transactions to us, regardless of feefilter state.
5548
0
    if (pto.IsBlockOnlyConn()) return;
5549
5550
0
    CAmount currentFilter = m_mempool.GetMinFee().GetFeePerK();
5551
5552
0
    if (m_chainman.IsInitialBlockDownload()) {
5553
        // Received tx-inv messages are discarded when the active
5554
        // chainstate is in IBD, so tell the peer to not send them.
5555
0
        currentFilter = MAX_MONEY;
5556
0
    } else {
5557
0
        static const CAmount MAX_FILTER{m_fee_filter_rounder.round(MAX_MONEY)};
5558
0
        if (peer.m_fee_filter_sent == MAX_FILTER) {
5559
            // Send the current filter if we sent MAX_FILTER previously
5560
            // and made it out of IBD.
5561
0
            peer.m_next_send_feefilter = 0us;
5562
0
        }
5563
0
    }
5564
0
    if (current_time > peer.m_next_send_feefilter) {
5565
0
        CAmount filterToSend = m_fee_filter_rounder.round(currentFilter);
5566
        // We always have a fee filter of at least the min relay fee
5567
0
        filterToSend = std::max(filterToSend, m_mempool.m_opts.min_relay_feerate.GetFeePerK());
5568
0
        if (filterToSend != peer.m_fee_filter_sent) {
5569
0
            MakeAndPushMessage(pto, NetMsgType::FEEFILTER, filterToSend);
5570
0
            peer.m_fee_filter_sent = filterToSend;
5571
0
        }
5572
0
        peer.m_next_send_feefilter = current_time + m_rng.rand_exp_duration(AVG_FEEFILTER_BROADCAST_INTERVAL);
5573
0
    }
5574
    // If the fee filter has changed substantially and it's still more than MAX_FEEFILTER_CHANGE_DELAY
5575
    // until scheduled broadcast, then move the broadcast to within MAX_FEEFILTER_CHANGE_DELAY.
5576
0
    else if (current_time + MAX_FEEFILTER_CHANGE_DELAY < peer.m_next_send_feefilter &&
5577
0
                (currentFilter < 3 * peer.m_fee_filter_sent / 4 || currentFilter > 4 * peer.m_fee_filter_sent / 3)) {
5578
0
        peer.m_next_send_feefilter = current_time + m_rng.randrange<std::chrono::microseconds>(MAX_FEEFILTER_CHANGE_DELAY);
5579
0
    }
5580
0
}
5581
5582
namespace {
5583
class CompareInvMempoolOrder
5584
{
5585
    const CTxMemPool* m_mempool;
5586
public:
5587
0
    explicit CompareInvMempoolOrder(CTxMemPool* mempool) : m_mempool{mempool} {}
5588
5589
    bool operator()(std::set<Wtxid>::iterator a, std::set<Wtxid>::iterator b)
5590
0
    {
5591
        /* As std::make_heap produces a max-heap, we want the entries with the
5592
         * higher mining score to sort later. */
5593
0
        return m_mempool->CompareMiningScoreWithTopology(*b, *a);
5594
0
    }
5595
};
5596
} // namespace
5597
5598
bool PeerManagerImpl::RejectIncomingTxs(const CNode& peer) const
5599
0
{
5600
    // block-relay-only peers may never send txs to us
5601
0
    if (peer.IsBlockOnlyConn()) return true;
5602
0
    if (peer.IsFeelerConn()) return true;
5603
    // In -blocksonly mode, peers need the 'relay' permission to send txs to us
5604
0
    if (m_opts.ignore_incoming_txs && !peer.HasPermission(NetPermissionFlags::Relay)) return true;
5605
0
    return false;
5606
0
}
5607
5608
bool PeerManagerImpl::SetupAddressRelay(const CNode& node, Peer& peer)
5609
0
{
5610
    // We don't participate in addr relay with outbound block-relay-only
5611
    // connections to prevent providing adversaries with the additional
5612
    // information of addr traffic to infer the link.
5613
0
    if (node.IsBlockOnlyConn()) return false;
5614
5615
0
    if (!peer.m_addr_relay_enabled.exchange(true)) {
5616
        // During version message processing (non-block-relay-only outbound peers)
5617
        // or on first addr-related message we have received (inbound peers), initialize
5618
        // m_addr_known.
5619
0
        peer.m_addr_known = std::make_unique<CRollingBloomFilter>(5000, 0.001);
5620
0
    }
5621
5622
0
    return true;
5623
0
}
5624
5625
void PeerManagerImpl::ProcessAddrs(std::string_view msg_type, CNode& pfrom, Peer& peer, std::vector<CAddress>&& vAddr, const std::atomic<bool>& interruptMsgProc)
5626
0
{
5627
0
    AssertLockNotHeld(m_peer_mutex);
Line
Count
Source
147
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
5628
0
    AssertLockHeld(g_msgproc_mutex);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
5629
5630
0
    if (!SetupAddressRelay(pfrom, peer)) {
5631
0
        LogDebug(BCLog::NET, "ignoring %s message from %s peer=%d\n", msg_type, pfrom.ConnectionTypeAsString(), pfrom.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5632
0
        return;
5633
0
    }
5634
5635
0
    if (vAddr.size() > MAX_ADDR_TO_SEND)
5636
0
    {
5637
0
        Misbehaving(peer, strprintf("%s message size = %u", msg_type, vAddr.size()));
Line
Count
Source
1172
0
#define strprintf tfm::format
5638
0
        return;
5639
0
    }
5640
5641
    // Store the new addresses
5642
0
    std::vector<CAddress> vAddrOk;
5643
5644
    // Update/increment addr rate limiting bucket.
5645
0
    const auto current_time{NodeClock::now()};
5646
0
    if (peer.m_addr_token_bucket < MAX_ADDR_PROCESSING_TOKEN_BUCKET) {
5647
        // Don't increment bucket if it's already full
5648
0
        const auto time_diff{current_time - peer.m_addr_token_timestamp};
5649
0
        const double increment{std::max(Ticks<SecondsDouble>(time_diff), 0.0) * MAX_ADDR_RATE_PER_SECOND};
5650
0
        peer.m_addr_token_bucket = std::min<double>(peer.m_addr_token_bucket + increment, MAX_ADDR_PROCESSING_TOKEN_BUCKET);
5651
0
    }
5652
0
    peer.m_addr_token_timestamp = current_time;
5653
5654
0
    const bool rate_limited = !pfrom.HasPermission(NetPermissionFlags::Addr);
5655
0
    uint64_t num_proc = 0;
5656
0
    uint64_t num_rate_limit = 0;
5657
0
    std::shuffle(vAddr.begin(), vAddr.end(), m_rng);
5658
0
    for (CAddress& addr : vAddr)
5659
0
    {
5660
0
        if (interruptMsgProc)
5661
0
            return;
5662
5663
        // Apply rate limiting.
5664
0
        if (peer.m_addr_token_bucket < 1.0) {
5665
0
            if (rate_limited) {
5666
0
                ++num_rate_limit;
5667
0
                continue;
5668
0
            }
5669
0
        } else {
5670
0
            peer.m_addr_token_bucket -= 1.0;
5671
0
        }
5672
        // We only bother storing full nodes, though this may include
5673
        // things which we would not make an outbound connection to, in
5674
        // part because we may make feeler connections to them.
5675
0
        if (!MayHaveUsefulAddressDB(addr.nServices) && !HasAllDesirableServiceFlags(addr.nServices))
5676
0
            continue;
5677
5678
0
        if (addr.nTime <= NodeSeconds{100000000s} || addr.nTime > current_time + 10min) {
5679
0
            addr.nTime = std::chrono::time_point_cast<std::chrono::seconds>(current_time - 5 * 24h);
5680
0
        }
5681
0
        AddAddressKnown(peer, addr);
5682
0
        if (m_banman && (m_banman->IsDiscouraged(addr) || m_banman->IsBanned(addr))) {
5683
            // Do not process banned/discouraged addresses beyond remembering we received them
5684
0
            continue;
5685
0
        }
5686
0
        ++num_proc;
5687
0
        const bool reachable{g_reachable_nets.Contains(addr)};
5688
0
        if (addr.nTime > current_time - 10min && !peer.m_getaddr_sent && vAddr.size() <= 10 && addr.IsRoutable()) {
5689
            // Relay to a limited number of other nodes
5690
0
            RelayAddress(pfrom.GetId(), addr, reachable);
5691
0
        }
5692
        // Do not store addresses outside our network
5693
0
        if (reachable) {
5694
0
            vAddrOk.push_back(addr);
5695
0
        }
5696
0
    }
5697
0
    peer.m_addr_processed += num_proc;
5698
0
    peer.m_addr_rate_limited += num_rate_limit;
5699
0
    LogDebug(BCLog::NET, "Received addr: %u addresses (%u processed, %u rate-limited) from peer=%d\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5700
0
             vAddr.size(), num_proc, num_rate_limit, pfrom.GetId());
5701
5702
0
    m_addrman.Add(vAddrOk, pfrom.addr, /*time_penalty=*/2h);
5703
0
    if (vAddr.size() < 1000) peer.m_getaddr_sent = false;
5704
5705
    // AddrFetch: Require multiple addresses to avoid disconnecting on self-announcements
5706
0
    if (pfrom.IsAddrFetchConn() && vAddr.size() > 1) {
5707
0
        LogDebug(BCLog::NET, "addrfetch connection completed, %s", pfrom.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5708
0
        pfrom.fDisconnect = true;
5709
0
    }
5710
0
}
5711
5712
bool PeerManagerImpl::SendMessages(CNode& node)
5713
0
{
5714
0
    AssertLockNotHeld(m_tx_download_mutex);
Line
Count
Source
147
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
5715
0
    AssertLockHeld(g_msgproc_mutex);
Line
Count
Source
142
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
5716
5717
0
    PeerRef maybe_peer{GetPeerRef(node.GetId())};
5718
0
    if (!maybe_peer) return false;
5719
0
    Peer& peer{*maybe_peer};
5720
0
    const Consensus::Params& consensusParams = m_chainparams.GetConsensus();
5721
5722
    // We must call MaybeDiscourageAndDisconnect first, to ensure that we'll
5723
    // disconnect misbehaving peers even before the version handshake is complete.
5724
0
    if (MaybeDiscourageAndDisconnect(node, peer)) return true;
5725
5726
    // Initiate version handshake for outbound connections
5727
0
    if (!node.IsInboundConn() && !peer.m_outbound_version_message_sent) {
5728
0
        PushNodeVersion(node, peer);
5729
0
        peer.m_outbound_version_message_sent = true;
5730
0
    }
5731
5732
    // Don't send anything until the version handshake is complete
5733
0
    if (!node.fSuccessfullyConnected || node.fDisconnect)
5734
0
        return true;
5735
5736
0
    const auto current_time{GetTime<std::chrono::microseconds>()};
5737
5738
    // The logic below does not apply to private broadcast peers, so skip it.
5739
    // Also in CConnman::PushMessage() we make sure that unwanted messages are
5740
    // not sent. This here is just an optimization.
5741
0
    if (node.IsPrivateBroadcastConn()) {
5742
0
        if (node.m_connected + PRIVATE_BROADCAST_MAX_CONNECTION_LIFETIME < current_time) {
5743
0
            LogDebug(BCLog::PRIVBROADCAST, "Disconnecting: did not complete the transaction send within %d seconds, %s",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5744
0
                     count_seconds(PRIVATE_BROADCAST_MAX_CONNECTION_LIFETIME), node.LogPeer());
5745
0
            node.fDisconnect = true;
5746
0
        }
5747
0
        return true;
5748
0
    }
5749
5750
0
    if (node.IsAddrFetchConn() && current_time - node.m_connected > 10 * AVG_ADDRESS_BROADCAST_INTERVAL) {
5751
0
        LogDebug(BCLog::NET, "addrfetch connection timeout, %s", node.DisconnectMsg());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5752
0
        node.fDisconnect = true;
5753
0
        return true;
5754
0
    }
5755
5756
0
    MaybeSendPing(node, peer, current_time);
5757
5758
    // MaybeSendPing may have marked peer for disconnection
5759
0
    if (node.fDisconnect) return true;
5760
5761
0
    MaybeSendAddr(node, peer, current_time);
5762
5763
0
    MaybeSendSendHeaders(node, peer);
5764
5765
0
    {
5766
0
        LOCK(cs_main);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5767
5768
0
        CNodeState &state = *State(node.GetId());
5769
5770
        // Start block sync
5771
0
        if (m_chainman.m_best_header == nullptr) {
5772
0
            m_chainman.m_best_header = m_chainman.ActiveChain().Tip();
5773
0
        }
5774
5775
        // Determine whether we might try initial headers sync or parallel
5776
        // block download from this peer -- this mostly affects behavior while
5777
        // in IBD (once out of IBD, we sync from all peers).
5778
0
        bool sync_blocks_and_headers_from_peer = false;
5779
0
        if (state.fPreferredDownload) {
5780
0
            sync_blocks_and_headers_from_peer = true;
5781
0
        } else if (CanServeBlocks(peer) && !node.IsAddrFetchConn()) {
5782
            // Typically this is an inbound peer. If we don't have any outbound
5783
            // peers, or if we aren't downloading any blocks from such peers,
5784
            // then allow block downloads from this peer, too.
5785
            // We prefer downloading blocks from outbound peers to avoid
5786
            // putting undue load on (say) some home user who is just making
5787
            // outbound connections to the network, but if our only source of
5788
            // the latest blocks is from an inbound peer, we have to be sure to
5789
            // eventually download it (and not just wait indefinitely for an
5790
            // outbound peer to have it).
5791
0
            if (m_num_preferred_download_peers == 0 || mapBlocksInFlight.empty()) {
5792
0
                sync_blocks_and_headers_from_peer = true;
5793
0
            }
5794
0
        }
5795
5796
0
        if (!state.fSyncStarted && CanServeBlocks(peer) && !m_chainman.m_blockman.LoadingBlocks()) {
5797
            // Only actively request headers from a single peer, unless we're close to today.
5798
0
            if ((nSyncStarted == 0 && sync_blocks_and_headers_from_peer) || m_chainman.m_best_header->Time() > NodeClock::now() - 24h) {
5799
0
                const CBlockIndex* pindexStart = m_chainman.m_best_header;
5800
                /* If possible, start at the block preceding the currently
5801
                   best known header.  This ensures that we always get a
5802
                   non-empty list of headers back as long as the peer
5803
                   is up-to-date.  With a non-empty response, we can initialise
5804
                   the peer's known best block.  This wouldn't be possible
5805
                   if we requested starting at m_chainman.m_best_header and
5806
                   got back an empty response.  */
5807
0
                if (pindexStart->pprev)
5808
0
                    pindexStart = pindexStart->pprev;
5809
0
                if (MaybeSendGetHeaders(node, GetLocator(pindexStart), peer)) {
5810
0
                    LogDebug(BCLog::NET, "initial getheaders (%d) to peer=%d", pindexStart->nHeight, node.GetId());
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5811
5812
0
                    state.fSyncStarted = true;
5813
0
                    peer.m_headers_sync_timeout = current_time + HEADERS_DOWNLOAD_TIMEOUT_BASE +
5814
0
                        (
5815
                         // Convert HEADERS_DOWNLOAD_TIMEOUT_PER_HEADER to microseconds before scaling
5816
                         // to maintain precision
5817
0
                         std::chrono::microseconds{HEADERS_DOWNLOAD_TIMEOUT_PER_HEADER} *
5818
0
                         Ticks<std::chrono::seconds>(NodeClock::now() - m_chainman.m_best_header->Time()) / consensusParams.nPowTargetSpacing
5819
0
                        );
5820
0
                    nSyncStarted++;
5821
0
                }
5822
0
            }
5823
0
        }
5824
5825
        //
5826
        // Try sending block announcements via headers
5827
        //
5828
0
        {
5829
            // If we have no more than MAX_BLOCKS_TO_ANNOUNCE in our
5830
            // list of block hashes we're relaying, and our peer wants
5831
            // headers announcements, then find the first header
5832
            // not yet known to our peer but would connect, and send.
5833
            // If no header would connect, or if we have too many
5834
            // blocks, or if the peer doesn't want headers, just
5835
            // add all to the inv queue.
5836
0
            LOCK(peer.m_block_inv_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5837
0
            std::vector<CBlock> vHeaders;
5838
0
            bool fRevertToInv = ((!peer.m_prefers_headers &&
5839
0
                                 (!state.m_requested_hb_cmpctblocks || peer.m_blocks_for_headers_relay.size() > 1)) ||
5840
0
                                 peer.m_blocks_for_headers_relay.size() > MAX_BLOCKS_TO_ANNOUNCE);
5841
0
            const CBlockIndex *pBestIndex = nullptr; // last header queued for delivery
5842
0
            ProcessBlockAvailability(node.GetId()); // ensure pindexBestKnownBlock is up-to-date
5843
5844
0
            if (!fRevertToInv) {
5845
0
                bool fFoundStartingHeader = false;
5846
                // Try to find first header that our peer doesn't have, and
5847
                // then send all headers past that one.  If we come across any
5848
                // headers that aren't on m_chainman.ActiveChain(), give up.
5849
0
                for (const uint256& hash : peer.m_blocks_for_headers_relay) {
5850
0
                    const CBlockIndex* pindex = m_chainman.m_blockman.LookupBlockIndex(hash);
5851
0
                    assert(pindex);
5852
0
                    if (m_chainman.ActiveChain()[pindex->nHeight] != pindex) {
5853
                        // Bail out if we reorged away from this block
5854
0
                        fRevertToInv = true;
5855
0
                        break;
5856
0
                    }
5857
0
                    if (pBestIndex != nullptr && pindex->pprev != pBestIndex) {
5858
                        // This means that the list of blocks to announce don't
5859
                        // connect to each other.
5860
                        // This shouldn't really be possible to hit during
5861
                        // regular operation (because reorgs should take us to
5862
                        // a chain that has some block not on the prior chain,
5863
                        // which should be caught by the prior check), but one
5864
                        // way this could happen is by using invalidateblock /
5865
                        // reconsiderblock repeatedly on the tip, causing it to
5866
                        // be added multiple times to m_blocks_for_headers_relay.
5867
                        // Robustly deal with this rare situation by reverting
5868
                        // to an inv.
5869
0
                        fRevertToInv = true;
5870
0
                        break;
5871
0
                    }
5872
0
                    pBestIndex = pindex;
5873
0
                    if (fFoundStartingHeader) {
5874
                        // add this to the headers message
5875
0
                        vHeaders.emplace_back(pindex->GetBlockHeader());
5876
0
                    } else if (PeerHasHeader(&state, pindex)) {
5877
0
                        continue; // keep looking for the first new block
5878
0
                    } else if (pindex->pprev == nullptr || PeerHasHeader(&state, pindex->pprev)) {
5879
                        // Peer doesn't have this header but they do have the prior one.
5880
                        // Start sending headers.
5881
0
                        fFoundStartingHeader = true;
5882
0
                        vHeaders.emplace_back(pindex->GetBlockHeader());
5883
0
                    } else {
5884
                        // Peer doesn't have this header or the prior one -- nothing will
5885
                        // connect, so bail out.
5886
0
                        fRevertToInv = true;
5887
0
                        break;
5888
0
                    }
5889
0
                }
5890
0
            }
5891
0
            if (!fRevertToInv && !vHeaders.empty()) {
5892
0
                if (vHeaders.size() == 1 && state.m_requested_hb_cmpctblocks) {
5893
                    // We only send up to 1 block as header-and-ids, as otherwise
5894
                    // probably means we're doing an initial-ish-sync or they're slow
5895
0
                    LogDebug(BCLog::NET, "%s sending header-and-ids %s to peer=%d\n", __func__,
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5896
0
                            vHeaders.front().GetHash().ToString(), node.GetId());
5897
5898
0
                    std::optional<CSerializedNetMsg> cached_cmpctblock_msg;
5899
0
                    {
5900
0
                        LOCK(m_most_recent_block_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5901
0
                        if (m_most_recent_block_hash == pBestIndex->GetBlockHash()) {
5902
0
                            cached_cmpctblock_msg = NetMsg::Make(NetMsgType::CMPCTBLOCK, *m_most_recent_compact_block);
5903
0
                        }
5904
0
                    }
5905
0
                    if (cached_cmpctblock_msg.has_value()) {
5906
0
                        PushMessage(node, std::move(cached_cmpctblock_msg.value()));
5907
0
                    } else {
5908
0
                        CBlock block;
5909
0
                        const bool ret{m_chainman.m_blockman.ReadBlock(block, *pBestIndex)};
5910
0
                        assert(ret);
5911
0
                        CBlockHeaderAndShortTxIDs cmpctblock{block, m_rng.rand64()};
5912
0
                        MakeAndPushMessage(node, NetMsgType::CMPCTBLOCK, cmpctblock);
5913
0
                    }
5914
0
                    state.pindexBestHeaderSent = pBestIndex;
5915
0
                } else if (peer.m_prefers_headers) {
5916
0
                    if (vHeaders.size() > 1) {
5917
0
                        LogDebug(BCLog::NET, "%s: %u headers, range (%s, %s), to peer=%d\n", __func__,
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5918
0
                                vHeaders.size(),
5919
0
                                vHeaders.front().GetHash().ToString(),
5920
0
                                vHeaders.back().GetHash().ToString(), node.GetId());
5921
0
                    } else {
5922
0
                        LogDebug(BCLog::NET, "%s: sending header %s to peer=%d\n", __func__,
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5923
0
                                vHeaders.front().GetHash().ToString(), node.GetId());
5924
0
                    }
5925
0
                    MakeAndPushMessage(node, NetMsgType::HEADERS, TX_WITH_WITNESS(vHeaders));
5926
0
                    state.pindexBestHeaderSent = pBestIndex;
5927
0
                } else
5928
0
                    fRevertToInv = true;
5929
0
            }
5930
0
            if (fRevertToInv) {
5931
                // If falling back to using an inv, just try to inv the tip.
5932
                // The last entry in m_blocks_for_headers_relay was our tip at some point
5933
                // in the past.
5934
0
                if (!peer.m_blocks_for_headers_relay.empty()) {
5935
0
                    const uint256& hashToAnnounce = peer.m_blocks_for_headers_relay.back();
5936
0
                    const CBlockIndex* pindex = m_chainman.m_blockman.LookupBlockIndex(hashToAnnounce);
5937
0
                    assert(pindex);
5938
5939
                    // Warn if we're announcing a block that is not on the main chain.
5940
                    // This should be very rare and could be optimized out.
5941
                    // Just log for now.
5942
0
                    if (m_chainman.ActiveChain()[pindex->nHeight] != pindex) {
5943
0
                        LogDebug(BCLog::NET, "Announcing block %s not on main chain (tip=%s)\n",
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5944
0
                            hashToAnnounce.ToString(), m_chainman.ActiveChain().Tip()->GetBlockHash().ToString());
5945
0
                    }
5946
5947
                    // If the peer's chain has this block, don't inv it back.
5948
0
                    if (!PeerHasHeader(&state, pindex)) {
5949
0
                        peer.m_blocks_for_inv_relay.push_back(hashToAnnounce);
5950
0
                        LogDebug(BCLog::NET, "%s: sending inv peer=%d hash=%s\n", __func__,
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
5951
0
                            node.GetId(), hashToAnnounce.ToString());
5952
0
                    }
5953
0
                }
5954
0
            }
5955
0
            peer.m_blocks_for_headers_relay.clear();
5956
0
        }
5957
5958
        //
5959
        // Message: inventory
5960
        //
5961
0
        std::vector<CInv> vInv;
5962
0
        {
5963
0
            LOCK(peer.m_block_inv_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5964
0
            vInv.reserve(std::max<size_t>(peer.m_blocks_for_inv_relay.size(), INVENTORY_BROADCAST_TARGET));
5965
5966
            // Add blocks
5967
0
            for (const uint256& hash : peer.m_blocks_for_inv_relay) {
5968
0
                vInv.emplace_back(MSG_BLOCK, hash);
5969
0
                if (vInv.size() == MAX_INV_SZ) {
5970
0
                    MakeAndPushMessage(node, NetMsgType::INV, vInv);
5971
0
                    vInv.clear();
5972
0
                }
5973
0
            }
5974
0
            peer.m_blocks_for_inv_relay.clear();
5975
0
        }
5976
5977
0
        if (auto tx_relay = peer.GetTxRelay(); tx_relay != nullptr) {
5978
0
                LOCK(tx_relay->m_tx_inventory_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5979
                // Check whether periodic sends should happen
5980
0
                bool fSendTrickle = node.HasPermission(NetPermissionFlags::NoBan);
5981
0
                if (tx_relay->m_next_inv_send_time < current_time) {
5982
0
                    fSendTrickle = true;
5983
0
                    if (node.IsInboundConn()) {
5984
0
                        tx_relay->m_next_inv_send_time = NextInvToInbounds(current_time, INBOUND_INVENTORY_BROADCAST_INTERVAL, node.m_network_key);
5985
0
                    } else {
5986
0
                        tx_relay->m_next_inv_send_time = current_time + m_rng.rand_exp_duration(OUTBOUND_INVENTORY_BROADCAST_INTERVAL);
5987
0
                    }
5988
0
                }
5989
5990
                // Time to send but the peer has requested we not relay transactions.
5991
0
                if (fSendTrickle) {
5992
0
                    LOCK(tx_relay->m_bloom_filter_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
5993
0
                    if (!tx_relay->m_relay_txs) tx_relay->m_tx_inventory_to_send.clear();
5994
0
                }
5995
5996
                // Respond to BIP35 mempool requests
5997
0
                if (fSendTrickle && tx_relay->m_send_mempool) {
5998
0
                    auto vtxinfo = m_mempool.infoAll();
5999
0
                    tx_relay->m_send_mempool = false;
6000
0
                    const CFeeRate filterrate{tx_relay->m_fee_filter_received.load()};
6001
6002
0
                    LOCK(tx_relay->m_bloom_filter_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
6003
6004
0
                    for (const auto& txinfo : vtxinfo) {
6005
0
                        const Txid& txid{txinfo.tx->GetHash()};
6006
0
                        const Wtxid& wtxid{txinfo.tx->GetWitnessHash()};
6007
0
                        const auto inv = peer.m_wtxid_relay ?
6008
0
                                             CInv{MSG_WTX, wtxid.ToUint256()} :
6009
0
                                             CInv{MSG_TX, txid.ToUint256()};
6010
0
                        tx_relay->m_tx_inventory_to_send.erase(wtxid);
6011
6012
                        // Don't send transactions that peers will not put into their mempool
6013
0
                        if (txinfo.fee < filterrate.GetFee(txinfo.vsize)) {
6014
0
                            continue;
6015
0
                        }
6016
0
                        if (tx_relay->m_bloom_filter) {
6017
0
                            if (!tx_relay->m_bloom_filter->IsRelevantAndUpdate(*txinfo.tx)) continue;
6018
0
                        }
6019
0
                        tx_relay->m_tx_inventory_known_filter.insert(inv.hash);
6020
0
                        vInv.push_back(inv);
6021
0
                        if (vInv.size() == MAX_INV_SZ) {
6022
0
                            MakeAndPushMessage(node, NetMsgType::INV, vInv);
6023
0
                            vInv.clear();
6024
0
                        }
6025
0
                    }
6026
0
                }
6027
6028
                // Determine transactions to relay
6029
0
                if (fSendTrickle) {
6030
                    // Produce a vector with all candidates for sending
6031
0
                    std::vector<std::set<Wtxid>::iterator> vInvTx;
6032
0
                    vInvTx.reserve(tx_relay->m_tx_inventory_to_send.size());
6033
0
                    for (std::set<Wtxid>::iterator it = tx_relay->m_tx_inventory_to_send.begin(); it != tx_relay->m_tx_inventory_to_send.end(); it++) {
6034
0
                        vInvTx.push_back(it);
6035
0
                    }
6036
0
                    const CFeeRate filterrate{tx_relay->m_fee_filter_received.load()};
6037
                    // Topologically and fee-rate sort the inventory we send for privacy and priority reasons.
6038
                    // A heap is used so that not all items need sorting if only a few are being sent.
6039
0
                    CompareInvMempoolOrder compareInvMempoolOrder(&m_mempool);
6040
0
                    std::make_heap(vInvTx.begin(), vInvTx.end(), compareInvMempoolOrder);
6041
                    // No reason to drain out at many times the network's capacity,
6042
                    // especially since we have many peers and some will draw much shorter delays.
6043
0
                    unsigned int nRelayedTransactions = 0;
6044
0
                    LOCK(tx_relay->m_bloom_filter_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
6045
0
                    size_t broadcast_max{INVENTORY_BROADCAST_TARGET + (tx_relay->m_tx_inventory_to_send.size()/1000)*5};
6046
0
                    broadcast_max = std::min<size_t>(INVENTORY_BROADCAST_MAX, broadcast_max);
6047
0
                    while (!vInvTx.empty() && nRelayedTransactions < broadcast_max) {
6048
                        // Fetch the top element from the heap
6049
0
                        std::pop_heap(vInvTx.begin(), vInvTx.end(), compareInvMempoolOrder);
6050
0
                        std::set<Wtxid>::iterator it = vInvTx.back();
6051
0
                        vInvTx.pop_back();
6052
0
                        auto wtxid = *it;
6053
                        // Remove it from the to-be-sent set
6054
0
                        tx_relay->m_tx_inventory_to_send.erase(it);
6055
                        // Not in the mempool anymore? don't bother sending it.
6056
0
                        auto txinfo = m_mempool.info(wtxid);
6057
0
                        if (!txinfo.tx) {
6058
0
                            continue;
6059
0
                        }
6060
                        // `TxRelay::m_tx_inventory_known_filter` contains either txids or wtxids
6061
                        // depending on whether our peer supports wtxid-relay. Therefore, first
6062
                        // construct the inv and then use its hash for the filter check.
6063
0
                        const auto inv = peer.m_wtxid_relay ?
6064
0
                                             CInv{MSG_WTX, wtxid.ToUint256()} :
6065
0
                                             CInv{MSG_TX, txinfo.tx->GetHash().ToUint256()};
6066
                        // Check if not in the filter already
6067
0
                        if (tx_relay->m_tx_inventory_known_filter.contains(inv.hash)) {
6068
0
                            continue;
6069
0
                        }
6070
                        // Peer told you to not send transactions at that feerate? Don't bother sending it.
6071
0
                        if (txinfo.fee < filterrate.GetFee(txinfo.vsize)) {
6072
0
                            continue;
6073
0
                        }
6074
0
                        if (tx_relay->m_bloom_filter && !tx_relay->m_bloom_filter->IsRelevantAndUpdate(*txinfo.tx)) continue;
6075
                        // Send
6076
0
                        vInv.push_back(inv);
6077
0
                        nRelayedTransactions++;
6078
0
                        if (vInv.size() == MAX_INV_SZ) {
6079
0
                            MakeAndPushMessage(node, NetMsgType::INV, vInv);
6080
0
                            vInv.clear();
6081
0
                        }
6082
0
                        tx_relay->m_tx_inventory_known_filter.insert(inv.hash);
6083
0
                    }
6084
6085
                    // Ensure we'll respond to GETDATA requests for anything we've just announced
6086
0
                    LOCK(m_mempool.cs);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
6087
0
                    tx_relay->m_last_inv_sequence = m_mempool.GetSequence();
6088
0
                }
6089
0
        }
6090
0
        if (!vInv.empty())
6091
0
            MakeAndPushMessage(node, NetMsgType::INV, vInv);
6092
6093
        // Detect whether we're stalling
6094
0
        auto stalling_timeout = m_block_stalling_timeout.load();
6095
0
        if (state.m_stalling_since.count() && state.m_stalling_since < current_time - stalling_timeout) {
6096
            // Stalling only triggers when the block download window cannot move. During normal steady state,
6097
            // the download window should be much larger than the to-be-downloaded set of blocks, so disconnection
6098
            // should only happen during initial block download.
6099
0
            LogInfo("Peer is stalling block download, %s", node.DisconnectMsg());
Line
Count
Source
95
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
6100
0
            node.fDisconnect = true;
6101
            // Increase timeout for the next peer so that we don't disconnect multiple peers if our own
6102
            // bandwidth is insufficient.
6103
0
            const auto new_timeout = std::min(2 * stalling_timeout, BLOCK_STALLING_TIMEOUT_MAX);
6104
0
            if (stalling_timeout != new_timeout && m_block_stalling_timeout.compare_exchange_strong(stalling_timeout, new_timeout)) {
6105
0
                LogDebug(BCLog::NET, "Increased stalling timeout temporarily to %d seconds\n", count_seconds(new_timeout));
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
6106
0
            }
6107
0
            return true;
6108
0
        }
6109
        // In case there is a block that has been in flight from this peer for block_interval * (1 + 0.5 * N)
6110
        // (with N the number of peers from which we're downloading validated blocks), disconnect due to timeout.
6111
        // We compensate for other peers to prevent killing off peers due to our own downstream link
6112
        // being saturated. We only count validated in-flight blocks so peers can't advertise non-existing block hashes
6113
        // to unreasonably increase our timeout.
6114
0
        if (state.vBlocksInFlight.size() > 0) {
6115
0
            QueuedBlock &queuedBlock = state.vBlocksInFlight.front();
6116
0
            int nOtherPeersWithValidatedDownloads = m_peers_downloading_from - 1;
6117
0
            if (current_time > state.m_downloading_since + std::chrono::seconds{consensusParams.nPowTargetSpacing} * (BLOCK_DOWNLOAD_TIMEOUT_BASE + BLOCK_DOWNLOAD_TIMEOUT_PER_PEER * nOtherPeersWithValidatedDownloads)) {
6118
0
                LogInfo("Timeout downloading block %s, %s", queuedBlock.pindex->GetBlockHash().ToString(), node.DisconnectMsg());
Line
Count
Source
95
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
6119
0
                node.fDisconnect = true;
6120
0
                return true;
6121
0
            }
6122
0
        }
6123
        // Check for headers sync timeouts
6124
0
        if (state.fSyncStarted && peer.m_headers_sync_timeout < std::chrono::microseconds::max()) {
6125
            // Detect whether this is a stalling initial-headers-sync peer
6126
0
            if (m_chainman.m_best_header->Time() <= NodeClock::now() - 24h) {
6127
0
                if (current_time > peer.m_headers_sync_timeout && nSyncStarted == 1 && (m_num_preferred_download_peers - state.fPreferredDownload >= 1)) {
6128
                    // Disconnect a peer (without NetPermissionFlags::NoBan permission) if it is our only sync peer,
6129
                    // and we have others we could be using instead.
6130
                    // Note: If all our peers are inbound, then we won't
6131
                    // disconnect our sync peer for stalling; we have bigger
6132
                    // problems if we can't get any outbound peers.
6133
0
                    if (!node.HasPermission(NetPermissionFlags::NoBan)) {
6134
0
                        LogInfo("Timeout downloading headers, %s", node.DisconnectMsg());
Line
Count
Source
95
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
6135
0
                        node.fDisconnect = true;
6136
0
                        return true;
6137
0
                    } else {
6138
0
                        LogInfo("Timeout downloading headers from noban peer, not %s", node.DisconnectMsg());
Line
Count
Source
95
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
6139
                        // Reset the headers sync state so that we have a
6140
                        // chance to try downloading from a different peer.
6141
                        // Note: this will also result in at least one more
6142
                        // getheaders message to be sent to
6143
                        // this peer (eventually).
6144
0
                        state.fSyncStarted = false;
6145
0
                        nSyncStarted--;
6146
0
                        peer.m_headers_sync_timeout = 0us;
6147
0
                    }
6148
0
                }
6149
0
            } else {
6150
                // After we've caught up once, reset the timeout so we can't trigger
6151
                // disconnect later.
6152
0
                peer.m_headers_sync_timeout = std::chrono::microseconds::max();
6153
0
            }
6154
0
        }
6155
6156
        // Check that outbound peers have reasonable chains
6157
        // GetTime() is used by this anti-DoS logic so we can test this using mocktime
6158
0
        ConsiderEviction(node, peer, GetTime<std::chrono::seconds>());
6159
6160
        //
6161
        // Message: getdata (blocks)
6162
        //
6163
0
        std::vector<CInv> vGetData;
6164
0
        if (CanServeBlocks(peer) && ((sync_blocks_and_headers_from_peer && !IsLimitedPeer(peer)) || !m_chainman.IsInitialBlockDownload()) && state.vBlocksInFlight.size() < MAX_BLOCKS_IN_TRANSIT_PER_PEER) {
6165
0
            std::vector<const CBlockIndex*> vToDownload;
6166
0
            NodeId staller = -1;
6167
0
            auto get_inflight_budget = [&state]() {
6168
0
                return std::max(0, MAX_BLOCKS_IN_TRANSIT_PER_PEER - static_cast<int>(state.vBlocksInFlight.size()));
6169
0
            };
6170
6171
            // If there are multiple chainstates, download blocks for the
6172
            // current chainstate first, to prioritize getting to network tip
6173
            // before downloading historical blocks.
6174
0
            FindNextBlocksToDownload(peer, get_inflight_budget(), vToDownload, staller);
6175
0
            auto historical_blocks{m_chainman.GetHistoricalBlockRange()};
6176
0
            if (historical_blocks && !IsLimitedPeer(peer)) {
6177
                // If the first needed historical block is not an ancestor of the last,
6178
                // we need to start requesting blocks from their last common ancestor.
6179
0
                const CBlockIndex* from_tip = LastCommonAncestor(historical_blocks->first, historical_blocks->second);
6180
0
                TryDownloadingHistoricalBlocks(
6181
0
                    peer,
6182
0
                    get_inflight_budget(),
6183
0
                    vToDownload, from_tip, historical_blocks->second);
6184
0
            }
6185
0
            for (const CBlockIndex *pindex : vToDownload) {
6186
0
                uint32_t nFetchFlags = GetFetchFlags(peer);
6187
0
                vGetData.emplace_back(MSG_BLOCK | nFetchFlags, pindex->GetBlockHash());
6188
0
                BlockRequested(node.GetId(), *pindex);
6189
0
                LogDebug(BCLog::NET, "Requesting block %s (%d) peer=%d\n", pindex->GetBlockHash().ToString(),
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
6190
0
                    pindex->nHeight, node.GetId());
6191
0
            }
6192
0
            if (state.vBlocksInFlight.empty() && staller != -1) {
6193
0
                if (State(staller)->m_stalling_since == 0us) {
6194
0
                    State(staller)->m_stalling_since = current_time;
6195
0
                    LogDebug(BCLog::NET, "Stall started peer=%d\n", staller);
Line
Count
Source
115
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
106
0
    do {                                                               \
107
0
        if (util::log::ShouldLog((category), (level))) {               \
108
0
            bool rate_limit{level >= BCLog::Level::Info};              \
109
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
125
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
110
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
89
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
111
0
        }                                                              \
112
0
    } while (0)
6196
0
                }
6197
0
            }
6198
0
        }
6199
6200
        //
6201
        // Message: getdata (transactions)
6202
        //
6203
0
        {
6204
0
            LOCK(m_tx_download_mutex);
Line
Count
Source
266
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
6205
0
            for (const GenTxid& gtxid : m_txdownloadman.GetRequestsToSend(node.GetId(), current_time)) {
6206
0
                vGetData.emplace_back(gtxid.IsWtxid() ? MSG_WTX : (MSG_TX | GetFetchFlags(peer)), gtxid.ToUint256());
6207
0
                if (vGetData.size() >= MAX_GETDATA_SZ) {
6208
0
                    MakeAndPushMessage(node, NetMsgType::GETDATA, vGetData);
6209
0
                    vGetData.clear();
6210
0
                }
6211
0
            }
6212
0
        }
6213
6214
0
        if (!vGetData.empty())
6215
0
            MakeAndPushMessage(node, NetMsgType::GETDATA, vGetData);
6216
0
    } // release cs_main
6217
0
    MaybeSendFeefilter(node, peer, current_time);
6218
0
    return true;
6219
0
}