Bitcoin Core Fuzz Coverage Report

Coverage Report

Created: 2026-05-28 15:05

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/Users/brunogarcia/projects/bitcoin-core-dev/src/net.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 <bitcoin-build-config.h> // IWYU pragma: keep
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#include <net.h>
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10
#include <addrdb.h>
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#include <addrman.h>
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#include <banman.h>
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#include <clientversion.h>
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#include <common/args.h>
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#include <common/netif.h>
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#include <compat/compat.h>
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#include <consensus/consensus.h>
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#include <crypto/sha256.h>
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#include <i2p.h>
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#include <key.h>
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#include <logging.h>
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#include <memusage.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 <node/eviction.h>
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#include <node/interface_ui.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 <util/fs.h>
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#include <util/sock.h>
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#include <util/strencodings.h>
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#include <util/thread.h>
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#include <util/threadinterrupt.h>
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#include <util/trace.h>
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#include <util/translation.h>
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#include <util/vector.h>
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#include <algorithm>
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#include <array>
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#include <cmath>
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#include <cstdint>
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#include <cstring>
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#include <functional>
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#include <optional>
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#include <string_view>
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#include <unordered_map>
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TRACEPOINT_SEMAPHORE(net, closed_connection);
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TRACEPOINT_SEMAPHORE(net, evicted_inbound_connection);
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TRACEPOINT_SEMAPHORE(net, inbound_connection);
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TRACEPOINT_SEMAPHORE(net, outbound_connection);
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TRACEPOINT_SEMAPHORE(net, outbound_message);
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/** Maximum number of block-relay-only anchor connections */
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static constexpr size_t MAX_BLOCK_RELAY_ONLY_ANCHORS = 2;
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static_assert (MAX_BLOCK_RELAY_ONLY_ANCHORS <= static_cast<size_t>(MAX_BLOCK_RELAY_ONLY_CONNECTIONS), "MAX_BLOCK_RELAY_ONLY_ANCHORS must not exceed MAX_BLOCK_RELAY_ONLY_CONNECTIONS.");
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/** Anchor IP address database file name */
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const char* const ANCHORS_DATABASE_FILENAME = "anchors.dat";
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// How often to dump addresses to peers.dat
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static constexpr std::chrono::minutes DUMP_PEERS_INTERVAL{15};
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/** Number of DNS seeds to query when the number of connections is low. */
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static constexpr int DNSSEEDS_TO_QUERY_AT_ONCE = 3;
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/** Minimum number of outbound connections under which we will keep fetching our address seeds. */
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static constexpr int SEED_OUTBOUND_CONNECTION_THRESHOLD = 2;
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/** How long to delay before querying DNS seeds
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 *
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 * If we have more than THRESHOLD entries in addrman, then it's likely
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 * that we got those addresses from having previously connected to the P2P
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 * network, and that we'll be able to successfully reconnect to the P2P
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 * network via contacting one of them. So if that's the case, spend a
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 * little longer trying to connect to known peers before querying the
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 * DNS seeds.
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 */
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static constexpr std::chrono::seconds DNSSEEDS_DELAY_FEW_PEERS{11};
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static constexpr std::chrono::minutes DNSSEEDS_DELAY_MANY_PEERS{5};
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static constexpr int DNSSEEDS_DELAY_PEER_THRESHOLD = 1000; // "many" vs "few" peers
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/** The default timeframe for -maxuploadtarget. 1 day. */
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static constexpr std::chrono::seconds MAX_UPLOAD_TIMEFRAME{60 * 60 * 24};
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// A random time period (0 to 1 seconds) is added to feeler connections to prevent synchronization.
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static constexpr auto FEELER_SLEEP_WINDOW{1s};
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/** Frequency to attempt extra connections to reachable networks we're not connected to yet **/
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static constexpr auto EXTRA_NETWORK_PEER_INTERVAL{5min};
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/** Used to pass flags to the Bind() function */
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enum BindFlags {
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    BF_NONE         = 0,
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    BF_REPORT_ERROR = (1U << 0),
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    /**
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     * Do not call AddLocal() for our special addresses, e.g., for incoming
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     * Tor connections, to prevent gossiping them over the network.
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     */
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    BF_DONT_ADVERTISE = (1U << 1),
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};
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// The set of sockets cannot be modified while waiting
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// The sleep time needs to be small to avoid new sockets stalling
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static const uint64_t SELECT_TIMEOUT_MILLISECONDS = 50;
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const std::string NET_MESSAGE_TYPE_OTHER = "*other*";
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static const uint64_t RANDOMIZER_ID_NETGROUP = 0x6c0edd8036ef4036ULL; // SHA256("netgroup")[0:8]
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static const uint64_t RANDOMIZER_ID_LOCALHOSTNONCE = 0xd93e69e2bbfa5735ULL; // SHA256("localhostnonce")[0:8]
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static const uint64_t RANDOMIZER_ID_NETWORKKEY = 0x0e8a2b136c592a7dULL; // SHA256("networkkey")[0:8]
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//
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// Global state variables
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//
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bool fDiscover = true;
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bool fListen = true;
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GlobalMutex g_maplocalhost_mutex;
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std::map<CNetAddr, LocalServiceInfo> mapLocalHost GUARDED_BY(g_maplocalhost_mutex);
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std::string strSubVersion;
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size_t CSerializedNetMsg::GetMemoryUsage() const noexcept
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39.0k
{
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39.0k
    return sizeof(*this) + memusage::DynamicUsage(m_type) + memusage::DynamicUsage(data);
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39.0k
}
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size_t CNetMessage::GetMemoryUsage() const noexcept
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21.2k
{
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21.2k
    return sizeof(*this) + memusage::DynamicUsage(m_type) + m_recv.GetMemoryUsage();
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21.2k
}
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void CConnman::AddAddrFetch(const std::string& strDest)
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0
{
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0
    LOCK(m_addr_fetches_mutex);
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268
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#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
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11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
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9
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#define PASTE2(x, y) PASTE(x, y)
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8
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#define PASTE(x, y) x ## y
135
0
    m_addr_fetches.push_back(strDest);
136
0
}
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138
uint16_t GetListenPort()
139
0
{
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    // If -bind= is provided with ":port" part, use that (first one if multiple are provided).
141
0
    for (const std::string& bind_arg : gArgs.GetArgs("-bind")) {
142
0
        constexpr uint16_t dummy_port = 0;
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0
        const std::optional<CService> bind_addr{Lookup(bind_arg, dummy_port, /*fAllowLookup=*/false)};
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0
        if (bind_addr.has_value() && bind_addr->GetPort() != dummy_port) return bind_addr->GetPort();
146
0
    }
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    // Otherwise, if -whitebind= without NetPermissionFlags::NoBan is provided, use that
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    // (-whitebind= is required to have ":port").
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0
    for (const std::string& whitebind_arg : gArgs.GetArgs("-whitebind")) {
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0
        NetWhitebindPermissions whitebind;
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0
        bilingual_str error;
153
0
        if (NetWhitebindPermissions::TryParse(whitebind_arg, whitebind, error)) {
154
0
            if (!NetPermissions::HasFlag(whitebind.m_flags, NetPermissionFlags::NoBan)) {
155
0
                return whitebind.m_service.GetPort();
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0
            }
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0
        }
158
0
    }
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    // Otherwise, if -port= is provided, use that. Otherwise use the default port.
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0
    return static_cast<uint16_t>(gArgs.GetIntArg("-port", Params().GetDefaultPort()));
162
0
}
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// Determine the "best" local address for a particular peer.
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[[nodiscard]] static std::optional<CService> GetLocal(const CNode& peer)
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0
{
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0
    if (!fListen) return std::nullopt;
168
169
0
    std::optional<CService> addr;
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0
    int nBestScore = -1;
171
0
    int nBestReachability = -1;
172
0
    {
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0
        LOCK(g_maplocalhost_mutex);
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268
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
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11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
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9
0
#define PASTE2(x, y) PASTE(x, y)
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8
0
#define PASTE(x, y) x ## y
174
0
        for (const auto& [local_addr, local_service_info] : mapLocalHost) {
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            // For privacy reasons, don't advertise our privacy-network address
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            // to other networks and don't advertise our other-network address
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            // to privacy networks.
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0
            if (local_addr.GetNetwork() != peer.ConnectedThroughNetwork()
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0
                && (local_addr.IsPrivacyNet() || peer.IsConnectedThroughPrivacyNet())) {
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0
                continue;
181
0
            }
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0
            const int nScore{local_service_info.nScore};
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0
            const int nReachability{local_addr.GetReachabilityFrom(peer.addr)};
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0
            if (nReachability > nBestReachability || (nReachability == nBestReachability && nScore > nBestScore)) {
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0
                addr.emplace(CService{local_addr, local_service_info.nPort});
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0
                nBestReachability = nReachability;
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0
                nBestScore = nScore;
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0
            }
189
0
        }
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0
    }
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0
    return addr;
192
0
}
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//! Convert the serialized seeds into usable address objects.
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static std::vector<CAddress> ConvertSeeds(const std::vector<uint8_t> &vSeedsIn)
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0
{
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    // It'll only connect to one or two seed nodes because once it connects,
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    // it'll get a pile of addresses with newer timestamps.
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    // Seed nodes are given a random 'last seen time' of between one and two
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    // weeks ago.
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0
    const auto one_week{7 * 24h};
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0
    std::vector<CAddress> vSeedsOut;
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0
    FastRandomContext rng;
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0
    ParamsStream s{SpanReader{vSeedsIn}, CAddress::V2_NETWORK};
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0
    while (!s.empty()) {
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0
        CService endpoint;
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0
        s >> endpoint;
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0
        CAddress addr{endpoint, SeedsServiceFlags()};
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        addr.nTime = rng.rand_uniform_delay(Now<NodeSeconds>() - one_week, -one_week);
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        LogDebug(BCLog::NET, "Added hardcoded seed: %s\n", addr.ToStringAddrPort());
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117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
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108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
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0
            Assume(!rate_limit); /*Only called with the levels below*/ \
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128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
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91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
211
0
        vSeedsOut.push_back(addr);
212
0
    }
213
0
    return vSeedsOut;
214
0
}
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// Determine the "best" local address for a particular peer.
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// If none, return the unroutable 0.0.0.0 but filled in with
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// the normal parameters, since the IP may be changed to a useful
219
// one by discovery.
220
CService GetLocalAddress(const CNode& peer)
221
0
{
222
0
    return GetLocal(peer).value_or(CService{CNetAddr(), GetListenPort()});
223
0
}
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static int GetnScore(const CService& addr)
226
0
{
227
0
    LOCK(g_maplocalhost_mutex);
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268
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
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11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
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9
0
#define PASTE2(x, y) PASTE(x, y)
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8
0
#define PASTE(x, y) x ## y
228
0
    const auto it = mapLocalHost.find(addr);
229
0
    return (it != mapLocalHost.end()) ? it->second.nScore : 0;
230
0
}
231
232
// Is our peer's addrLocal potentially useful as an external IP source?
233
[[nodiscard]] static bool IsPeerAddrLocalGood(CNode *pnode)
234
0
{
235
0
    CService addrLocal = pnode->GetAddrLocal();
236
0
    return fDiscover && pnode->addr.IsRoutable() && addrLocal.IsRoutable() &&
237
0
           g_reachable_nets.Contains(addrLocal);
238
0
}
239
240
std::optional<CService> GetLocalAddrForPeer(CNode& node)
241
0
{
242
0
    CService addrLocal{GetLocalAddress(node)};
243
    // If discovery is enabled, sometimes give our peer the address it
244
    // tells us that it sees us as in case it has a better idea of our
245
    // address than we do.
246
0
    FastRandomContext rng;
247
0
    if (IsPeerAddrLocalGood(&node) && (!addrLocal.IsRoutable() ||
248
0
         rng.randbits((GetnScore(addrLocal) > LOCAL_MANUAL) ? 3 : 1) == 0))
249
0
    {
250
0
        if (node.IsInboundConn()) {
251
            // For inbound connections, assume both the address and the port
252
            // as seen from the peer.
253
0
            addrLocal = CService{node.GetAddrLocal()};
254
0
        } else {
255
            // For outbound connections, assume just the address as seen from
256
            // the peer and leave the port in `addrLocal` as returned by
257
            // `GetLocalAddress()` above. The peer has no way to observe our
258
            // listening port when we have initiated the connection.
259
0
            addrLocal.SetIP(node.GetAddrLocal());
260
0
        }
261
0
    }
262
0
    if (addrLocal.IsRoutable()) {
263
0
        LogDebug(BCLog::NET, "Advertising address %s to peer=%d\n", addrLocal.ToStringAddrPort(), node.GetId());
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117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
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108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
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128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
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91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
264
0
        return addrLocal;
265
0
    }
266
    // Address is unroutable. Don't advertise.
267
0
    return std::nullopt;
268
0
}
269
270
void ClearLocal()
271
0
{
272
0
    LOCK(g_maplocalhost_mutex);
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268
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
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11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
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9
0
#define PASTE2(x, y) PASTE(x, y)
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8
0
#define PASTE(x, y) x ## y
273
0
    return mapLocalHost.clear();
274
0
}
275
276
// learn a new local address
277
bool AddLocal(const CService& addr_, int nScore)
278
0
{
279
0
    CService addr{MaybeFlipIPv6toCJDNS(addr_)};
280
281
0
    if (!addr.IsRoutable())
282
0
        return false;
283
284
0
    if (!fDiscover && nScore < LOCAL_MANUAL)
285
0
        return false;
286
287
0
    if (!g_reachable_nets.Contains(addr))
288
0
        return false;
289
290
0
    if (fLogIPs) {
291
0
        LogInfo("AddLocal(%s,%i)\n", addr.ToStringAddrPort(), nScore);
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97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
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91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
292
0
    }
293
294
0
    {
295
0
        LOCK(g_maplocalhost_mutex);
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268
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
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Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
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9
0
#define PASTE2(x, y) PASTE(x, y)
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8
0
#define PASTE(x, y) x ## y
296
0
        const auto [it, is_newly_added] = mapLocalHost.emplace(addr, LocalServiceInfo());
297
0
        LocalServiceInfo &info = it->second;
298
0
        if (is_newly_added || nScore >= info.nScore) {
299
0
            info.nScore = nScore + (is_newly_added ? 0 : 1);
300
0
            info.nPort = addr.GetPort();
301
0
        }
302
0
    }
303
304
0
    return true;
305
0
}
306
307
bool AddLocal(const CNetAddr &addr, int nScore)
308
0
{
309
0
    return AddLocal(CService(addr, GetListenPort()), nScore);
310
0
}
311
312
void RemoveLocal(const CService& addr)
313
0
{
314
0
    LOCK(g_maplocalhost_mutex);
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268
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
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Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
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Count
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9
0
#define PASTE2(x, y) PASTE(x, y)
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Count
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8
0
#define PASTE(x, y) x ## y
315
0
    if (fLogIPs) {
316
0
        LogInfo("RemoveLocal(%s)\n", addr.ToStringAddrPort());
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Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
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Count
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91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
317
0
    }
318
319
0
    mapLocalHost.erase(addr);
320
0
}
321
322
/** vote for a local address */
323
bool SeenLocal(const CService& addr)
324
151
{
325
151
    LOCK(g_maplocalhost_mutex);
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268
151
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
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11
151
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
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9
151
#define PASTE2(x, y) PASTE(x, y)
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8
151
#define PASTE(x, y) x ## y
326
151
    const auto it = mapLocalHost.find(addr);
327
151
    if (it == mapLocalHost.end()) return false;
328
0
    ++it->second.nScore;
329
0
    return true;
330
151
}
331
332
333
/** check whether a given address is potentially local */
334
bool IsLocal(const CService& addr)
335
0
{
336
0
    LOCK(g_maplocalhost_mutex);
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268
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__)
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9
0
#define PASTE2(x, y) PASTE(x, y)
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Count
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8
0
#define PASTE(x, y) x ## y
337
0
    return mapLocalHost.contains(addr);
338
0
}
339
340
bool CConnman::AlreadyConnectedToHost(std::string_view host) const
341
0
{
342
0
    LOCK(m_nodes_mutex);
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268
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__)
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Count
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9
0
#define PASTE2(x, y) PASTE(x, y)
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8
0
#define PASTE(x, y) x ## y
343
0
    return std::ranges::any_of(m_nodes, [&host](CNode* node) { return node->m_addr_name == host; });
344
0
}
345
346
bool CConnman::AlreadyConnectedToAddressPort(const CService& addr_port) const
347
0
{
348
0
    LOCK(m_nodes_mutex);
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268
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__)
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Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
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8
0
#define PASTE(x, y) x ## y
349
0
    return std::ranges::any_of(m_nodes, [&addr_port](CNode* node) { return node->addr == addr_port; });
350
0
}
351
352
bool CConnman::AlreadyConnectedToAddress(const CNetAddr& addr) const
353
0
{
354
0
    LOCK(m_nodes_mutex);
Line
Count
Source
268
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
355
0
    return std::ranges::any_of(m_nodes, [&addr](CNode* node) { return node->addr == addr; });
356
0
}
357
358
bool CConnman::CheckIncomingNonce(uint64_t nonce)
359
165
{
360
165
    LOCK(m_nodes_mutex);
Line
Count
Source
268
165
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
165
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
165
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
165
#define PASTE(x, y) x ## y
361
435
    for (const CNode* pnode : m_nodes) {
362
        // Omit private broadcast connections from this check to prevent this privacy attack:
363
        // - We connect to a peer in an attempt to privately broadcast a transaction. From our
364
        //   VERSION message the peer deducts that this is a short-lived connection for
365
        //   broadcasting a transaction, takes our nonce and delays their VERACK.
366
        // - The peer starts connecting to (clearnet) nodes and sends them a VERSION message
367
        //   which contains our nonce. If the peer manages to connect to us we would disconnect.
368
        // - Upon a disconnect, the peer knows our clearnet address. They go back to the short
369
        //   lived privacy broadcast connection and continue with VERACK.
370
435
        if (!pnode->fSuccessfullyConnected && 
!pnode->IsInboundConn()430
&&
!pnode->IsPrivateBroadcastConn()201
&&
371
435
            
pnode->GetLocalNonce() == nonce37
)
372
2
            return false;
373
435
    }
374
163
    return true;
375
165
}
376
377
CNode* CConnman::ConnectNode(CAddress addrConnect,
378
                             const char* pszDest,
379
                             bool fCountFailure,
380
                             ConnectionType conn_type,
381
                             bool use_v2transport,
382
                             const std::optional<Proxy>& proxy_override)
383
0
{
384
0
    AssertLockNotHeld(m_unused_i2p_sessions_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
385
0
    assert(conn_type != ConnectionType::INBOUND);
386
387
0
    if (pszDest == nullptr) {
388
0
        if (IsLocal(addrConnect))
389
0
            return nullptr;
390
391
        // Look for an existing connection
392
0
        if (AlreadyConnectedToAddressPort(addrConnect)) {
393
0
            LogInfo("Failed to open new connection to %s, already connected", addrConnect.ToStringAddrPort());
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
394
0
            return nullptr;
395
0
        }
396
0
    }
397
398
0
    LogDebug(BCLog::NET, "trying %s connection (%s) to %s, lastseen=%.1fhrs\n",
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
399
0
        use_v2transport ? "v2" : "v1",
400
0
        ConnectionTypeAsString(conn_type),
401
0
        pszDest ? pszDest : addrConnect.ToStringAddrPort(),
402
0
        Ticks<HoursDouble>(pszDest ? 0h : Now<NodeSeconds>() - addrConnect.nTime));
403
404
    // Resolve
405
0
    const uint16_t default_port{pszDest != nullptr ? GetDefaultPort(pszDest) :
406
0
                                                     m_params.GetDefaultPort()};
407
408
    // Collection of addresses to try to connect to: either all dns resolved addresses if a domain name (pszDest) is provided, or addrConnect otherwise.
409
0
    std::vector<CAddress> connect_to{};
410
0
    if (pszDest) {
411
0
        std::vector<CService> resolved{Lookup(pszDest, default_port, fNameLookup && !HaveNameProxy(), 256)};
412
0
        if (!resolved.empty()) {
413
0
            std::shuffle(resolved.begin(), resolved.end(), FastRandomContext());
414
            // If the connection is made by name, it can be the case that the name resolves to more than one address.
415
            // We don't want to connect any more of them if we are already connected to one
416
0
            for (const auto& r : resolved) {
417
0
                addrConnect = CAddress{MaybeFlipIPv6toCJDNS(r), NODE_NONE};
418
0
                if (!addrConnect.IsValid()) {
419
0
                    LogDebug(BCLog::NET, "Resolver returned invalid address %s for %s\n", addrConnect.ToStringAddrPort(), pszDest);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
420
0
                    return nullptr;
421
0
                }
422
                // It is possible that we already have a connection to the IP/port pszDest resolved to.
423
                // In that case, drop the connection that was just created.
424
0
                if (AlreadyConnectedToAddressPort(addrConnect)) {
425
0
                    LogInfo("Not opening a connection to %s, already connected to %s\n", pszDest, addrConnect.ToStringAddrPort());
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
426
0
                    return nullptr;
427
0
                }
428
                // Add the address to the resolved addresses vector so we can try to connect to it later on
429
0
                connect_to.push_back(addrConnect);
430
0
            }
431
0
        } else {
432
            // For resolution via proxy
433
0
            connect_to.push_back(addrConnect);
434
0
        }
435
0
    } else {
436
        // Connect via addrConnect directly
437
0
        connect_to.push_back(addrConnect);
438
0
    }
439
440
    // Connect
441
0
    std::unique_ptr<Sock> sock;
442
0
    CService addr_bind;
443
0
    assert(!addr_bind.IsValid());
444
0
    std::unique_ptr<i2p::sam::Session> i2p_transient_session;
445
446
0
    for (auto& target_addr : connect_to) {
447
0
        if (target_addr.IsValid()) {
448
0
            const std::optional<Proxy> use_proxy{
449
0
                proxy_override.has_value() ? proxy_override : GetProxy(target_addr.GetNetwork()),
450
0
            };
451
0
            bool proxyConnectionFailed = false;
452
453
0
            if (target_addr.IsI2P() && use_proxy) {
454
0
                i2p::Connection conn;
455
0
                bool connected{false};
456
457
                // If an I2P SAM session already exists, normally we would re-use it. But in the case of
458
                // private broadcast we force a new transient session. A Connect() using m_i2p_sam_session
459
                // would use our permanent I2P address as a source address.
460
0
                if (m_i2p_sam_session && conn_type != ConnectionType::PRIVATE_BROADCAST) {
461
0
                    connected = m_i2p_sam_session->Connect(target_addr, conn, proxyConnectionFailed);
462
0
                } else {
463
0
                    {
464
0
                        LOCK(m_unused_i2p_sessions_mutex);
Line
Count
Source
268
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
465
0
                        if (m_unused_i2p_sessions.empty()) {
466
0
                            i2p_transient_session =
467
0
                                std::make_unique<i2p::sam::Session>(*use_proxy, m_interrupt_net);
468
0
                        } else {
469
0
                            i2p_transient_session.swap(m_unused_i2p_sessions.front());
470
0
                            m_unused_i2p_sessions.pop();
471
0
                        }
472
0
                    }
473
0
                    connected = i2p_transient_session->Connect(target_addr, conn, proxyConnectionFailed);
474
0
                    if (!connected) {
475
0
                        LOCK(m_unused_i2p_sessions_mutex);
Line
Count
Source
268
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
476
0
                        if (m_unused_i2p_sessions.size() < MAX_UNUSED_I2P_SESSIONS_SIZE) {
477
0
                            m_unused_i2p_sessions.emplace(i2p_transient_session.release());
478
0
                        }
479
0
                    }
480
0
                }
481
482
0
                if (connected) {
483
0
                    sock = std::move(conn.sock);
484
0
                    addr_bind = conn.me;
485
0
                }
486
0
            } else if (use_proxy) {
487
0
                LogDebug(BCLog::PROXY, "Using proxy: %s to connect to %s\n", use_proxy->ToString(), target_addr.ToStringAddrPort());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
488
0
                sock = ConnectThroughProxy(*use_proxy, target_addr.ToStringAddr(), target_addr.GetPort(), proxyConnectionFailed);
489
0
            } else {
490
                // no proxy needed (none set for target network)
491
0
                sock = ConnectDirectly(target_addr, conn_type == ConnectionType::MANUAL);
492
0
            }
493
0
            if (!proxyConnectionFailed) {
494
                // If a connection to the node was attempted, and failure (if any) is not caused by a problem connecting to
495
                // the proxy, mark this as an attempt.
496
0
                addrman.get().Attempt(target_addr, fCountFailure);
497
0
            }
498
0
        } else if (pszDest) {
499
0
            if (const auto name_proxy = GetNameProxy()) {
500
0
                std::string host;
501
0
                uint16_t port{default_port};
502
0
                SplitHostPort(pszDest, port, host);
503
0
                bool proxyConnectionFailed;
504
0
                sock = ConnectThroughProxy(*name_proxy, host, port, proxyConnectionFailed);
505
0
            }
506
0
        }
507
        // Check any other resolved address (if any) if we fail to connect
508
0
        if (!sock) {
509
0
            continue;
510
0
        }
511
512
0
        NetPermissionFlags permission_flags = NetPermissionFlags::None;
513
0
        std::vector<NetWhitelistPermissions> whitelist_permissions = conn_type == ConnectionType::MANUAL ? vWhitelistedRangeOutgoing : std::vector<NetWhitelistPermissions>{};
514
0
        AddWhitelistPermissionFlags(permission_flags, target_addr, whitelist_permissions);
515
516
        // Add node
517
0
        NodeId id = GetNewNodeId();
518
0
        uint64_t nonce = GetDeterministicRandomizer(RANDOMIZER_ID_LOCALHOSTNONCE).Write(id).Finalize();
519
0
        if (!addr_bind.IsValid()) {
520
0
            addr_bind = GetBindAddress(*sock);
521
0
        }
522
0
        uint64_t network_id = GetDeterministicRandomizer(RANDOMIZER_ID_NETWORKKEY)
523
0
                            .Write(target_addr.GetNetClass())
524
0
                            .Write(addr_bind.GetAddrBytes())
525
                            // For outbound connections, the port of the bound address is randomly
526
                            // assigned by the OS and would therefore not be useful for seeding.
527
0
                            .Write(0)
528
0
                            .Finalize();
529
0
        CNode* pnode = new CNode(id,
530
0
                                std::move(sock),
531
0
                                target_addr,
532
0
                                CalculateKeyedNetGroup(target_addr),
533
0
                                nonce,
534
0
                                addr_bind,
535
0
                                pszDest ? pszDest : "",
536
0
                                conn_type,
537
0
                                /*inbound_onion=*/false,
538
0
                                network_id,
539
0
                                CNodeOptions{
540
0
                                    .permission_flags = permission_flags,
541
0
                                    .i2p_sam_session = std::move(i2p_transient_session),
542
0
                                    .recv_flood_size = nReceiveFloodSize,
543
0
                                    .use_v2transport = use_v2transport,
544
0
                                });
545
0
        pnode->AddRef();
546
547
        // We're making a new connection, harvest entropy from the time (and our peer count)
548
0
        RandAddEvent((uint32_t)id);
549
550
0
        return pnode;
551
0
    }
552
553
0
    return nullptr;
554
0
}
555
556
void CNode::CloseSocketDisconnect()
557
4.16k
{
558
4.16k
    fDisconnect = true;
559
4.16k
    LOCK(m_sock_mutex);
Line
Count
Source
268
4.16k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
4.16k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
4.16k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
4.16k
#define PASTE(x, y) x ## y
560
4.16k
    if (m_sock) {
561
3.75k
        LogDebug(BCLog::NET, "Resetting socket for %s", LogPeer());
Line
Count
Source
117
3.75k
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
3.75k
    do {                                                               \
109
3.75k
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
3.75k
    } while (0)
562
3.75k
        m_sock.reset();
563
564
3.75k
        TRACEPOINT(net, closed_connection,
565
3.75k
            GetId(),
566
3.75k
            m_addr_name.c_str(),
567
3.75k
            ConnectionTypeAsString().c_str(),
568
3.75k
            ConnectedThroughNetwork(),
569
3.75k
            Ticks<std::chrono::seconds>(m_connected));
570
3.75k
    }
571
4.16k
    m_i2p_sam_session.reset();
572
4.16k
}
573
574
0
void CConnman::AddWhitelistPermissionFlags(NetPermissionFlags& flags, std::optional<CNetAddr> addr, const std::vector<NetWhitelistPermissions>& ranges) const {
575
0
    for (const auto& subnet : ranges) {
576
0
        if (addr.has_value() && subnet.m_subnet.Match(addr.value())) {
577
0
            NetPermissions::AddFlag(flags, subnet.m_flags);
578
0
        }
579
0
    }
580
0
    if (NetPermissions::HasFlag(flags, NetPermissionFlags::Implicit)) {
581
0
        NetPermissions::ClearFlag(flags, NetPermissionFlags::Implicit);
582
0
        if (whitelist_forcerelay) NetPermissions::AddFlag(flags, NetPermissionFlags::ForceRelay);
583
0
        if (whitelist_relay) NetPermissions::AddFlag(flags, NetPermissionFlags::Relay);
584
0
        NetPermissions::AddFlag(flags, NetPermissionFlags::Mempool);
585
0
        NetPermissions::AddFlag(flags, NetPermissionFlags::NoBan);
586
0
    }
587
0
}
588
589
CService CNode::GetAddrLocal() const
590
0
{
591
0
    AssertLockNotHeld(m_addr_local_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
592
0
    LOCK(m_addr_local_mutex);
Line
Count
Source
268
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
593
0
    return m_addr_local;
594
0
}
595
596
870
void CNode::SetAddrLocal(const CService& addrLocalIn) {
597
870
    AssertLockNotHeld(m_addr_local_mutex);
Line
Count
Source
149
870
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
598
870
    LOCK(m_addr_local_mutex);
Line
Count
Source
268
870
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
870
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
870
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
870
#define PASTE(x, y) x ## y
599
870
    if (Assume(!m_addr_local.IsValid())) { // Addr local can only be set once during version msg processing
Line
Count
Source
128
870
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
600
870
        m_addr_local = addrLocalIn;
601
870
    }
602
870
}
603
604
Network CNode::ConnectedThroughNetwork() const
605
0
{
606
0
    return m_inbound_onion ? NET_ONION : addr.GetNetClass();
607
0
}
608
609
bool CNode::IsConnectedThroughPrivacyNet() const
610
0
{
611
0
    return m_inbound_onion || addr.IsPrivacyNet();
612
0
}
613
614
#undef X
615
0
#define X(name) stats.name = name
616
void CNode::CopyStats(CNodeStats& stats)
617
0
{
618
0
    stats.nodeid = this->GetId();
619
0
    X(addr);
Line
Count
Source
615
0
#define X(name) stats.name = name
620
0
    X(addrBind);
Line
Count
Source
615
0
#define X(name) stats.name = name
621
0
    stats.m_network = ConnectedThroughNetwork();
622
0
    X(m_last_send);
Line
Count
Source
615
0
#define X(name) stats.name = name
623
0
    X(m_last_recv);
Line
Count
Source
615
0
#define X(name) stats.name = name
624
0
    X(m_last_tx_time);
Line
Count
Source
615
0
#define X(name) stats.name = name
625
0
    X(m_last_block_time);
Line
Count
Source
615
0
#define X(name) stats.name = name
626
0
    X(m_connected);
Line
Count
Source
615
0
#define X(name) stats.name = name
627
0
    X(m_addr_name);
Line
Count
Source
615
0
#define X(name) stats.name = name
628
0
    X(nVersion);
Line
Count
Source
615
0
#define X(name) stats.name = name
629
0
    {
630
0
        LOCK(m_subver_mutex);
Line
Count
Source
268
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
631
0
        X(cleanSubVer);
Line
Count
Source
615
0
#define X(name) stats.name = name
632
0
    }
633
0
    stats.fInbound = IsInboundConn();
634
0
    X(m_bip152_highbandwidth_to);
Line
Count
Source
615
0
#define X(name) stats.name = name
635
0
    X(m_bip152_highbandwidth_from);
Line
Count
Source
615
0
#define X(name) stats.name = name
636
0
    {
637
0
        LOCK(cs_vSend);
Line
Count
Source
268
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
638
0
        X(mapSendBytesPerMsgType);
Line
Count
Source
615
0
#define X(name) stats.name = name
639
0
        X(nSendBytes);
Line
Count
Source
615
0
#define X(name) stats.name = name
640
0
    }
641
0
    {
642
0
        LOCK(cs_vRecv);
Line
Count
Source
268
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
643
0
        X(mapRecvBytesPerMsgType);
Line
Count
Source
615
0
#define X(name) stats.name = name
644
0
        X(nRecvBytes);
Line
Count
Source
615
0
#define X(name) stats.name = name
645
0
        Transport::Info info = m_transport->GetInfo();
646
0
        stats.m_transport_type = info.transport_type;
647
0
        if (info.session_id) stats.m_session_id = HexStr(*info.session_id);
648
0
    }
649
0
    X(m_permission_flags);
Line
Count
Source
615
0
#define X(name) stats.name = name
650
651
0
    X(m_last_ping_time);
Line
Count
Source
615
0
#define X(name) stats.name = name
652
0
    X(m_min_ping_time);
Line
Count
Source
615
0
#define X(name) stats.name = name
653
654
    // Leave string empty if addrLocal invalid (not filled in yet)
655
0
    CService addrLocalUnlocked = GetAddrLocal();
656
0
    stats.addrLocal = addrLocalUnlocked.IsValid() ? addrLocalUnlocked.ToStringAddrPort() : "";
657
658
0
    X(m_conn_type);
Line
Count
Source
615
0
#define X(name) stats.name = name
659
0
}
660
#undef X
661
662
bool CNode::ReceiveMsgBytes(std::span<const uint8_t> msg_bytes, bool& complete)
663
31.2k
{
664
31.2k
    complete = false;
665
31.2k
    const auto time = GetTime<std::chrono::microseconds>();
666
31.2k
    LOCK(cs_vRecv);
Line
Count
Source
268
31.2k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
31.2k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
31.2k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
31.2k
#define PASTE(x, y) x ## y
667
31.2k
    m_last_recv = std::chrono::duration_cast<std::chrono::seconds>(time);
668
31.2k
    nRecvBytes += msg_bytes.size();
669
62.5k
    while (msg_bytes.size() > 0) {
670
        // absorb network data
671
31.2k
        if (!m_transport->ReceivedBytes(msg_bytes)) {
672
            // Serious transport problem, disconnect from the peer.
673
0
            return false;
674
0
        }
675
676
31.2k
        if (m_transport->ReceivedMessageComplete()) {
677
            // decompose a transport agnostic CNetMessage from the deserializer
678
17.0k
            bool reject_message{false};
679
17.0k
            CNetMessage msg = m_transport->GetReceivedMessage(time, reject_message);
680
17.0k
            if (reject_message) {
681
                // Message deserialization failed. Drop the message but don't disconnect the peer.
682
                // store the size of the corrupt message
683
6.26k
                mapRecvBytesPerMsgType.at(NET_MESSAGE_TYPE_OTHER) += msg.m_raw_message_size;
684
6.26k
                continue;
685
6.26k
            }
686
687
            // Store received bytes per message type.
688
            // To prevent a memory DOS, only allow known message types.
689
10.7k
            auto i = mapRecvBytesPerMsgType.find(msg.m_type);
690
10.7k
            if (i == mapRecvBytesPerMsgType.end()) {
691
5.36k
                i = mapRecvBytesPerMsgType.find(NET_MESSAGE_TYPE_OTHER);
692
5.36k
            }
693
10.7k
            assert(i != mapRecvBytesPerMsgType.end());
694
10.7k
            i->second += msg.m_raw_message_size;
695
696
            // push the message to the process queue,
697
10.7k
            vRecvMsg.push_back(std::move(msg));
698
699
10.7k
            complete = true;
700
10.7k
        }
701
31.2k
    }
702
703
31.2k
    return true;
704
31.2k
}
705
706
std::string CNode::LogPeer() const
707
543
{
708
543
    auto peer_info{strprintf("peer=%d", GetId())};
Line
Count
Source
1172
543
#define strprintf tfm::format
709
543
    if (fLogIPs) {
710
0
        return strprintf("%s, peeraddr=%s", peer_info, addr.ToStringAddrPort());
Line
Count
Source
1172
0
#define strprintf tfm::format
711
543
    } else {
712
543
        return peer_info;
713
543
    }
714
543
}
715
716
std::string CNode::DisconnectMsg() const
717
6
{
718
6
    return strprintf("disconnecting %s", LogPeer());
Line
Count
Source
1172
6
#define strprintf tfm::format
719
6
}
720
721
V1Transport::V1Transport(const NodeId node_id) noexcept
722
3.75k
    : m_magic_bytes{Params().MessageStart()}, m_node_id{node_id}
723
3.75k
{
724
3.75k
    LOCK(m_recv_mutex);
Line
Count
Source
268
3.75k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
3.75k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
3.75k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
3.75k
#define PASTE(x, y) x ## y
725
3.75k
    Reset();
726
3.75k
}
727
728
Transport::Info V1Transport::GetInfo() const noexcept
729
537
{
730
537
    return {.transport_type = TransportProtocolType::V1, .session_id = {}};
731
537
}
732
733
int V1Transport::readHeader(std::span<const uint8_t> msg_bytes)
734
17.0k
{
735
17.0k
    AssertLockHeld(m_recv_mutex);
Line
Count
Source
144
17.0k
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
736
    // copy data to temporary parsing buffer
737
17.0k
    unsigned int nRemaining = CMessageHeader::HEADER_SIZE - nHdrPos;
738
17.0k
    unsigned int nCopy = std::min<unsigned int>(nRemaining, msg_bytes.size());
739
740
17.0k
    memcpy(&hdrbuf[nHdrPos], msg_bytes.data(), nCopy);
741
17.0k
    nHdrPos += nCopy;
742
743
    // if header incomplete, exit
744
17.0k
    if (nHdrPos < CMessageHeader::HEADER_SIZE)
745
0
        return nCopy;
746
747
    // deserialize to CMessageHeader
748
17.0k
    try {
749
17.0k
        hdrbuf >> hdr;
750
17.0k
    }
751
17.0k
    catch (const std::exception&) {
752
0
        LogDebug(BCLog::NET, "Header error: Unable to deserialize, peer=%d\n", m_node_id);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
753
0
        return -1;
754
0
    }
755
756
    // Check start string, network magic
757
17.0k
    if (hdr.pchMessageStart != m_magic_bytes) {
758
0
        LogDebug(BCLog::NET, "Header error: Wrong MessageStart %s received, peer=%d\n", HexStr(hdr.pchMessageStart), m_node_id);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
759
0
        return -1;
760
0
    }
761
762
    // reject messages larger than MAX_SIZE or MAX_PROTOCOL_MESSAGE_LENGTH
763
    // NOTE: failing to perform this check previously allowed a malicious peer to make us allocate 32MiB of memory per
764
    // connection. See https://bitcoincore.org/en/2024/07/03/disclose_receive_buffer_oom.
765
17.0k
    if (hdr.nMessageSize > MAX_SIZE || hdr.nMessageSize > MAX_PROTOCOL_MESSAGE_LENGTH) {
766
0
        LogDebug(BCLog::NET, "Header error: Size too large (%s, %u bytes), peer=%d\n", SanitizeString(hdr.GetMessageType()), hdr.nMessageSize, m_node_id);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
767
0
        return -1;
768
0
    }
769
770
    // switch state to reading message data
771
17.0k
    in_data = true;
772
773
17.0k
    return nCopy;
774
17.0k
}
775
776
int V1Transport::readData(std::span<const uint8_t> msg_bytes)
777
14.2k
{
778
14.2k
    AssertLockHeld(m_recv_mutex);
Line
Count
Source
144
14.2k
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
779
14.2k
    unsigned int nRemaining = hdr.nMessageSize - nDataPos;
780
14.2k
    unsigned int nCopy = std::min<unsigned int>(nRemaining, msg_bytes.size());
781
782
14.2k
    if (vRecv.size() < nDataPos + nCopy) {
783
        // Allocate up to 256 KiB ahead, but never more than the total message size.
784
14.2k
        vRecv.resize(std::min(hdr.nMessageSize, nDataPos + nCopy + 256 * 1024));
785
14.2k
    }
786
787
14.2k
    hasher.Write(msg_bytes.first(nCopy));
788
14.2k
    memcpy(&vRecv[nDataPos], msg_bytes.data(), nCopy);
789
14.2k
    nDataPos += nCopy;
790
791
14.2k
    return nCopy;
792
14.2k
}
793
794
const uint256& V1Transport::GetMessageHash() const
795
17.0k
{
796
17.0k
    AssertLockHeld(m_recv_mutex);
Line
Count
Source
144
17.0k
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
797
17.0k
    assert(CompleteInternal());
798
17.0k
    if (data_hash.IsNull())
799
17.0k
        hasher.Finalize(data_hash);
800
17.0k
    return data_hash;
801
17.0k
}
802
803
CNetMessage V1Transport::GetReceivedMessage(const std::chrono::microseconds time, bool& reject_message)
804
17.0k
{
805
17.0k
    AssertLockNotHeld(m_recv_mutex);
Line
Count
Source
149
17.0k
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
806
    // Initialize out parameter
807
17.0k
    reject_message = false;
808
    // decompose a single CNetMessage from the TransportDeserializer
809
17.0k
    LOCK(m_recv_mutex);
Line
Count
Source
268
17.0k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
17.0k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
17.0k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
17.0k
#define PASTE(x, y) x ## y
810
17.0k
    CNetMessage msg(std::move(vRecv));
811
812
    // store message type string, time, and sizes
813
17.0k
    msg.m_type = hdr.GetMessageType();
814
17.0k
    msg.m_time = time;
815
17.0k
    msg.m_message_size = hdr.nMessageSize;
816
17.0k
    msg.m_raw_message_size = hdr.nMessageSize + CMessageHeader::HEADER_SIZE;
817
818
17.0k
    uint256 hash = GetMessageHash();
819
820
    // We just received a message off the wire, harvest entropy from the time (and the message checksum)
821
17.0k
    RandAddEvent(ReadLE32(hash.begin()));
822
823
    // Check checksum and header message type string
824
17.0k
    if (memcmp(hash.begin(), hdr.pchChecksum, CMessageHeader::CHECKSUM_SIZE) != 0) {
825
0
        LogDebug(BCLog::NET, "Header error: Wrong checksum (%s, %u bytes), expected %s was %s, peer=%d\n",
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
826
0
                 SanitizeString(msg.m_type), msg.m_message_size,
827
0
                 HexStr(std::span{hash}.first(CMessageHeader::CHECKSUM_SIZE)),
828
0
                 HexStr(hdr.pchChecksum),
829
0
                 m_node_id);
830
0
        reject_message = true;
831
17.0k
    } else if (!hdr.IsMessageTypeValid()) {
832
6.26k
        LogDebug(BCLog::NET, "Header error: Invalid message type (%s, %u bytes), peer=%d\n",
Line
Count
Source
117
6.26k
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
6.26k
    do {                                                               \
109
6.26k
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
6.26k
    } while (0)
833
6.26k
                 SanitizeString(hdr.GetMessageType()), msg.m_message_size, m_node_id);
834
6.26k
        reject_message = true;
835
6.26k
    }
836
837
    // Always reset the network deserializer (prepare for the next message)
838
17.0k
    Reset();
839
17.0k
    return msg;
840
17.0k
}
841
842
bool V1Transport::SetMessageToSend(CSerializedNetMsg& msg) noexcept
843
25.9k
{
844
25.9k
    AssertLockNotHeld(m_send_mutex);
Line
Count
Source
149
25.9k
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
845
    // Determine whether a new message can be set.
846
25.9k
    LOCK(m_send_mutex);
Line
Count
Source
268
25.9k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
25.9k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
25.9k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
25.9k
#define PASTE(x, y) x ## y
847
25.9k
    if (m_sending_header || m_bytes_sent < m_message_to_send.data.size()) 
return false0
;
848
849
    // create dbl-sha256 checksum
850
25.9k
    uint256 hash = Hash(msg.data);
851
852
    // create header
853
25.9k
    CMessageHeader hdr(m_magic_bytes, msg.m_type.c_str(), msg.data.size());
854
25.9k
    memcpy(hdr.pchChecksum, hash.begin(), CMessageHeader::CHECKSUM_SIZE);
855
856
    // serialize header
857
25.9k
    m_header_to_send.clear();
858
25.9k
    VectorWriter{m_header_to_send, 0, hdr};
859
860
    // update state
861
25.9k
    m_message_to_send = std::move(msg);
862
25.9k
    m_sending_header = true;
863
25.9k
    m_bytes_sent = 0;
864
25.9k
    return true;
865
25.9k
}
866
867
Transport::BytesToSend V1Transport::GetBytesToSend(bool have_next_message) const noexcept
868
97.0k
{
869
97.0k
    AssertLockNotHeld(m_send_mutex);
Line
Count
Source
149
97.0k
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
870
97.0k
    LOCK(m_send_mutex);
Line
Count
Source
268
97.0k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
97.0k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
97.0k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
97.0k
#define PASTE(x, y) x ## y
871
97.0k
    if (m_sending_header) {
872
28.5k
        return {std::span{m_header_to_send}.subspan(m_bytes_sent),
873
                // We have more to send after the header if the message has payload, or if there
874
                // is a next message after that.
875
28.5k
                have_next_message || 
!m_message_to_send.data.empty()27.0k
,
876
28.5k
                m_message_to_send.m_type
877
28.5k
               };
878
68.4k
    } else {
879
68.4k
        return {std::span{m_message_to_send.data}.subspan(m_bytes_sent),
880
                // We only have more to send after this message's payload if there is another
881
                // message.
882
68.4k
                have_next_message,
883
68.4k
                m_message_to_send.m_type
884
68.4k
               };
885
68.4k
    }
886
97.0k
}
887
888
void V1Transport::MarkBytesSent(size_t bytes_sent) noexcept
889
44.6k
{
890
44.6k
    AssertLockNotHeld(m_send_mutex);
Line
Count
Source
149
44.6k
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
891
44.6k
    LOCK(m_send_mutex);
Line
Count
Source
268
44.6k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
44.6k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
44.6k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
44.6k
#define PASTE(x, y) x ## y
892
44.6k
    m_bytes_sent += bytes_sent;
893
44.6k
    if (m_sending_header && 
m_bytes_sent == m_header_to_send.size()26.3k
) {
894
        // We're done sending a message's header. Switch to sending its data bytes.
895
25.3k
        m_sending_header = false;
896
25.3k
        m_bytes_sent = 0;
897
25.3k
    } else 
if (19.2k
!m_sending_header19.2k
&&
m_bytes_sent == m_message_to_send.data.size()18.2k
) {
898
        // We're done sending a message's data. Wipe the data vector to reduce memory consumption.
899
18.0k
        ClearShrink(m_message_to_send.data);
900
18.0k
        m_bytes_sent = 0;
901
18.0k
    }
902
44.6k
}
903
904
size_t V1Transport::GetSendMemoryUsage() const noexcept
905
19.5k
{
906
19.5k
    AssertLockNotHeld(m_send_mutex);
Line
Count
Source
149
19.5k
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
907
19.5k
    LOCK(m_send_mutex);
Line
Count
Source
268
19.5k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
19.5k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
19.5k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
19.5k
#define PASTE(x, y) x ## y
908
    // Don't count sending-side fields besides m_message_to_send, as they're all small and bounded.
909
19.5k
    return m_message_to_send.GetMemoryUsage();
910
19.5k
}
911
912
namespace {
913
914
/** List of short messages as defined in BIP324, in order.
915
 *
916
 * Only message types that are actually implemented in this codebase need to be listed, as other
917
 * messages get ignored anyway - whether we know how to decode them or not.
918
 */
919
const std::array<std::string, 33> V2_MESSAGE_IDS = {
920
    "", // 12 bytes follow encoding the message type like in V1
921
    NetMsgType::ADDR,
922
    NetMsgType::BLOCK,
923
    NetMsgType::BLOCKTXN,
924
    NetMsgType::CMPCTBLOCK,
925
    NetMsgType::FEEFILTER,
926
    NetMsgType::FILTERADD,
927
    NetMsgType::FILTERCLEAR,
928
    NetMsgType::FILTERLOAD,
929
    NetMsgType::GETBLOCKS,
930
    NetMsgType::GETBLOCKTXN,
931
    NetMsgType::GETDATA,
932
    NetMsgType::GETHEADERS,
933
    NetMsgType::HEADERS,
934
    NetMsgType::INV,
935
    NetMsgType::MEMPOOL,
936
    NetMsgType::MERKLEBLOCK,
937
    NetMsgType::NOTFOUND,
938
    NetMsgType::PING,
939
    NetMsgType::PONG,
940
    NetMsgType::SENDCMPCT,
941
    NetMsgType::TX,
942
    NetMsgType::GETCFILTERS,
943
    NetMsgType::CFILTER,
944
    NetMsgType::GETCFHEADERS,
945
    NetMsgType::CFHEADERS,
946
    NetMsgType::GETCFCHECKPT,
947
    NetMsgType::CFCHECKPT,
948
    NetMsgType::ADDRV2,
949
    // Unimplemented message types that are assigned in BIP324:
950
    "",
951
    "",
952
    "",
953
    ""
954
};
955
956
class V2MessageMap
957
{
958
    std::unordered_map<std::string, uint8_t> m_map;
959
960
public:
961
    V2MessageMap() noexcept
962
0
    {
963
0
        for (size_t i = 1; i < std::size(V2_MESSAGE_IDS); ++i) {
964
0
            m_map.emplace(V2_MESSAGE_IDS[i], i);
965
0
        }
966
0
    }
967
968
    std::optional<uint8_t> operator()(const std::string& message_name) const noexcept
969
0
    {
970
0
        auto it = m_map.find(message_name);
971
0
        if (it == m_map.end()) return std::nullopt;
972
0
        return it->second;
973
0
    }
974
};
975
976
const V2MessageMap V2_MESSAGE_MAP;
977
978
std::vector<uint8_t> GenerateRandomGarbage() noexcept
979
0
{
980
0
    std::vector<uint8_t> ret;
981
0
    FastRandomContext rng;
982
0
    ret.resize(rng.randrange(V2Transport::MAX_GARBAGE_LEN + 1));
983
0
    rng.fillrand(MakeWritableByteSpan(ret));
984
0
    return ret;
985
0
}
986
987
} // namespace
988
989
void V2Transport::StartSendingHandshake() noexcept
990
0
{
991
0
    AssertLockHeld(m_send_mutex);
Line
Count
Source
144
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
992
0
    Assume(m_send_state == SendState::AWAITING_KEY);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
993
0
    Assume(m_send_buffer.empty());
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
994
    // Initialize the send buffer with ellswift pubkey + provided garbage.
995
0
    m_send_buffer.resize(EllSwiftPubKey::size() + m_send_garbage.size());
996
0
    std::copy(std::begin(m_cipher.GetOurPubKey()), std::end(m_cipher.GetOurPubKey()), MakeWritableByteSpan(m_send_buffer).begin());
997
0
    std::copy(m_send_garbage.begin(), m_send_garbage.end(), m_send_buffer.begin() + EllSwiftPubKey::size());
998
    // We cannot wipe m_send_garbage as it will still be used as AAD later in the handshake.
999
0
}
1000
1001
V2Transport::V2Transport(NodeId nodeid, bool initiating, const CKey& key, std::span<const std::byte> ent32, std::vector<uint8_t> garbage) noexcept
1002
0
    : m_cipher{key, ent32},
1003
0
      m_initiating{initiating},
1004
0
      m_nodeid{nodeid},
1005
0
      m_v1_fallback{nodeid},
1006
0
      m_recv_state{initiating ? RecvState::KEY : RecvState::KEY_MAYBE_V1},
1007
0
      m_send_garbage{std::move(garbage)},
1008
0
      m_send_state{initiating ? SendState::AWAITING_KEY : SendState::MAYBE_V1}
1009
0
{
1010
0
    Assume(m_send_garbage.size() <= MAX_GARBAGE_LEN);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1011
    // Start sending immediately if we're the initiator of the connection.
1012
0
    if (initiating) {
1013
0
        LOCK(m_send_mutex);
Line
Count
Source
268
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
1014
0
        StartSendingHandshake();
1015
0
    }
1016
0
}
1017
1018
V2Transport::V2Transport(NodeId nodeid, bool initiating) noexcept
1019
0
    : V2Transport{nodeid, initiating, GenerateRandomKey(),
1020
0
                  MakeByteSpan(GetRandHash()), GenerateRandomGarbage()} {}
Unexecuted instantiation: V2Transport::V2Transport(long long, bool)
Unexecuted instantiation: V2Transport::V2Transport(long long, bool)
1021
1022
void V2Transport::SetReceiveState(RecvState recv_state) noexcept
1023
0
{
1024
0
    AssertLockHeld(m_recv_mutex);
Line
Count
Source
144
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
1025
    // Enforce allowed state transitions.
1026
0
    switch (m_recv_state) {
1027
0
    case RecvState::KEY_MAYBE_V1:
1028
0
        Assume(recv_state == RecvState::KEY || recv_state == RecvState::V1);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1029
0
        break;
1030
0
    case RecvState::KEY:
1031
0
        Assume(recv_state == RecvState::GARB_GARBTERM);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1032
0
        break;
1033
0
    case RecvState::GARB_GARBTERM:
1034
0
        Assume(recv_state == RecvState::VERSION);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1035
0
        break;
1036
0
    case RecvState::VERSION:
1037
0
        Assume(recv_state == RecvState::APP);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1038
0
        break;
1039
0
    case RecvState::APP:
1040
0
        Assume(recv_state == RecvState::APP_READY);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1041
0
        break;
1042
0
    case RecvState::APP_READY:
1043
0
        Assume(recv_state == RecvState::APP);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1044
0
        break;
1045
0
    case RecvState::V1:
1046
0
        Assume(false); // V1 state cannot be left
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1047
0
        break;
1048
0
    }
1049
    // Change state.
1050
0
    m_recv_state = recv_state;
1051
0
}
1052
1053
void V2Transport::SetSendState(SendState send_state) noexcept
1054
0
{
1055
0
    AssertLockHeld(m_send_mutex);
Line
Count
Source
144
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
1056
    // Enforce allowed state transitions.
1057
0
    switch (m_send_state) {
1058
0
    case SendState::MAYBE_V1:
1059
0
        Assume(send_state == SendState::V1 || send_state == SendState::AWAITING_KEY);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1060
0
        break;
1061
0
    case SendState::AWAITING_KEY:
1062
0
        Assume(send_state == SendState::READY);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1063
0
        break;
1064
0
    case SendState::READY:
1065
0
    case SendState::V1:
1066
0
        Assume(false); // Final states
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1067
0
        break;
1068
0
    }
1069
    // Change state.
1070
0
    m_send_state = send_state;
1071
0
}
1072
1073
bool V2Transport::ReceivedMessageComplete() const noexcept
1074
0
{
1075
0
    AssertLockNotHeld(m_recv_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1076
0
    LOCK(m_recv_mutex);
Line
Count
Source
268
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
1077
0
    if (m_recv_state == RecvState::V1) return m_v1_fallback.ReceivedMessageComplete();
1078
1079
0
    return m_recv_state == RecvState::APP_READY;
1080
0
}
1081
1082
void V2Transport::ProcessReceivedMaybeV1Bytes() noexcept
1083
0
{
1084
0
    AssertLockHeld(m_recv_mutex);
Line
Count
Source
144
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
1085
0
    AssertLockNotHeld(m_send_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1086
0
    Assume(m_recv_state == RecvState::KEY_MAYBE_V1);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1087
    // We still have to determine if this is a v1 or v2 connection. The bytes being received could
1088
    // be the beginning of either a v1 packet (network magic + "version\x00\x00\x00\x00\x00"), or
1089
    // of a v2 public key. BIP324 specifies that a mismatch with this 16-byte string should trigger
1090
    // sending of the key.
1091
0
    std::array<uint8_t, V1_PREFIX_LEN> v1_prefix = {0, 0, 0, 0, 'v', 'e', 'r', 's', 'i', 'o', 'n', 0, 0, 0, 0, 0};
1092
0
    std::copy(std::begin(Params().MessageStart()), std::end(Params().MessageStart()), v1_prefix.begin());
1093
0
    Assume(m_recv_buffer.size() <= v1_prefix.size());
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1094
0
    if (!std::equal(m_recv_buffer.begin(), m_recv_buffer.end(), v1_prefix.begin())) {
1095
        // Mismatch with v1 prefix, so we can assume a v2 connection.
1096
0
        SetReceiveState(RecvState::KEY); // Convert to KEY state, leaving received bytes around.
1097
        // Transition the sender to AWAITING_KEY state and start sending.
1098
0
        LOCK(m_send_mutex);
Line
Count
Source
268
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
1099
0
        SetSendState(SendState::AWAITING_KEY);
1100
0
        StartSendingHandshake();
1101
0
    } else if (m_recv_buffer.size() == v1_prefix.size()) {
1102
        // Full match with the v1 prefix, so fall back to v1 behavior.
1103
0
        LOCK(m_send_mutex);
Line
Count
Source
268
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
1104
0
        std::span<const uint8_t> feedback{m_recv_buffer};
1105
        // Feed already received bytes to v1 transport. It should always accept these, because it's
1106
        // less than the size of a v1 header, and these are the first bytes fed to m_v1_fallback.
1107
0
        bool ret = m_v1_fallback.ReceivedBytes(feedback);
1108
0
        Assume(feedback.empty());
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1109
0
        Assume(ret);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1110
0
        SetReceiveState(RecvState::V1);
1111
0
        SetSendState(SendState::V1);
1112
        // Reset v2 transport buffers to save memory.
1113
0
        ClearShrink(m_recv_buffer);
1114
0
        ClearShrink(m_send_buffer);
1115
0
    } else {
1116
        // We have not received enough to distinguish v1 from v2 yet. Wait until more bytes come.
1117
0
    }
1118
0
}
1119
1120
bool V2Transport::ProcessReceivedKeyBytes() noexcept
1121
0
{
1122
0
    AssertLockHeld(m_recv_mutex);
Line
Count
Source
144
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
1123
0
    AssertLockNotHeld(m_send_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1124
0
    Assume(m_recv_state == RecvState::KEY);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1125
0
    Assume(m_recv_buffer.size() <= EllSwiftPubKey::size());
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1126
1127
    // As a special exception, if bytes 4-16 of the key on a responder connection match the
1128
    // corresponding bytes of a V1 version message, but bytes 0-4 don't match the network magic
1129
    // (if they did, we'd have switched to V1 state already), assume this is a peer from
1130
    // another network, and disconnect them. They will almost certainly disconnect us too when
1131
    // they receive our uniformly random key and garbage, but detecting this case specially
1132
    // means we can log it.
1133
0
    static constexpr std::array<uint8_t, 12> MATCH = {'v', 'e', 'r', 's', 'i', 'o', 'n', 0, 0, 0, 0, 0};
1134
0
    static constexpr size_t OFFSET = std::tuple_size_v<MessageStartChars>;
1135
0
    if (!m_initiating && m_recv_buffer.size() >= OFFSET + MATCH.size()) {
1136
0
        if (std::equal(MATCH.begin(), MATCH.end(), m_recv_buffer.begin() + OFFSET)) {
1137
0
            LogDebug(BCLog::NET, "V2 transport error: V1 peer with wrong MessageStart %s\n",
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1138
0
                     HexStr(std::span(m_recv_buffer).first(OFFSET)));
1139
0
            return false;
1140
0
        }
1141
0
    }
1142
1143
0
    if (m_recv_buffer.size() == EllSwiftPubKey::size()) {
1144
        // Other side's key has been fully received, and can now be Diffie-Hellman combined with
1145
        // our key to initialize the encryption ciphers.
1146
1147
        // Initialize the ciphers.
1148
0
        EllSwiftPubKey ellswift(MakeByteSpan(m_recv_buffer));
1149
0
        LOCK(m_send_mutex);
Line
Count
Source
268
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
1150
0
        m_cipher.Initialize(ellswift, m_initiating);
1151
1152
        // Switch receiver state to GARB_GARBTERM.
1153
0
        SetReceiveState(RecvState::GARB_GARBTERM);
1154
0
        m_recv_buffer.clear();
1155
1156
        // Switch sender state to READY.
1157
0
        SetSendState(SendState::READY);
1158
1159
        // Append the garbage terminator to the send buffer.
1160
0
        m_send_buffer.resize(m_send_buffer.size() + BIP324Cipher::GARBAGE_TERMINATOR_LEN);
1161
0
        std::copy(m_cipher.GetSendGarbageTerminator().begin(),
1162
0
                  m_cipher.GetSendGarbageTerminator().end(),
1163
0
                  MakeWritableByteSpan(m_send_buffer).last(BIP324Cipher::GARBAGE_TERMINATOR_LEN).begin());
1164
1165
        // Construct version packet in the send buffer, with the sent garbage data as AAD.
1166
0
        m_send_buffer.resize(m_send_buffer.size() + BIP324Cipher::EXPANSION + VERSION_CONTENTS.size());
1167
0
        m_cipher.Encrypt(
1168
0
            /*contents=*/VERSION_CONTENTS,
1169
0
            /*aad=*/MakeByteSpan(m_send_garbage),
1170
0
            /*ignore=*/false,
1171
0
            /*output=*/MakeWritableByteSpan(m_send_buffer).last(BIP324Cipher::EXPANSION + VERSION_CONTENTS.size()));
1172
        // We no longer need the garbage.
1173
0
        ClearShrink(m_send_garbage);
1174
0
    } else {
1175
        // We still have to receive more key bytes.
1176
0
    }
1177
0
    return true;
1178
0
}
1179
1180
bool V2Transport::ProcessReceivedGarbageBytes() noexcept
1181
0
{
1182
0
    AssertLockHeld(m_recv_mutex);
Line
Count
Source
144
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
1183
0
    Assume(m_recv_state == RecvState::GARB_GARBTERM);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1184
0
    Assume(m_recv_buffer.size() <= MAX_GARBAGE_LEN + BIP324Cipher::GARBAGE_TERMINATOR_LEN);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1185
0
    if (m_recv_buffer.size() >= BIP324Cipher::GARBAGE_TERMINATOR_LEN) {
1186
0
        if (std::ranges::equal(MakeByteSpan(m_recv_buffer).last(BIP324Cipher::GARBAGE_TERMINATOR_LEN), m_cipher.GetReceiveGarbageTerminator())) {
1187
            // Garbage terminator received. Store garbage to authenticate it as AAD later.
1188
0
            m_recv_aad = std::move(m_recv_buffer);
1189
0
            m_recv_aad.resize(m_recv_aad.size() - BIP324Cipher::GARBAGE_TERMINATOR_LEN);
1190
0
            m_recv_buffer.clear();
1191
0
            SetReceiveState(RecvState::VERSION);
1192
0
        } else if (m_recv_buffer.size() == MAX_GARBAGE_LEN + BIP324Cipher::GARBAGE_TERMINATOR_LEN) {
1193
            // We've reached the maximum length for garbage + garbage terminator, and the
1194
            // terminator still does not match. Abort.
1195
0
            LogDebug(BCLog::NET, "V2 transport error: missing garbage terminator, peer=%d\n", m_nodeid);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1196
0
            return false;
1197
0
        } else {
1198
            // We still need to receive more garbage and/or garbage terminator bytes.
1199
0
        }
1200
0
    } else {
1201
        // We have less than GARBAGE_TERMINATOR_LEN (16) bytes, so we certainly need to receive
1202
        // more first.
1203
0
    }
1204
0
    return true;
1205
0
}
1206
1207
bool V2Transport::ProcessReceivedPacketBytes() noexcept
1208
0
{
1209
0
    AssertLockHeld(m_recv_mutex);
Line
Count
Source
144
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
1210
0
    Assume(m_recv_state == RecvState::VERSION || m_recv_state == RecvState::APP);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1211
1212
    // The maximum permitted contents length for a packet, consisting of:
1213
    // - 0x00 byte: indicating long message type encoding
1214
    // - 12 bytes of message type
1215
    // - payload
1216
0
    static constexpr size_t MAX_CONTENTS_LEN =
1217
0
        1 + CMessageHeader::MESSAGE_TYPE_SIZE +
1218
0
        std::min<size_t>(MAX_SIZE, MAX_PROTOCOL_MESSAGE_LENGTH);
1219
1220
0
    if (m_recv_buffer.size() == BIP324Cipher::LENGTH_LEN) {
1221
        // Length descriptor received.
1222
0
        m_recv_len = m_cipher.DecryptLength(MakeByteSpan(m_recv_buffer));
1223
0
        if (m_recv_len > MAX_CONTENTS_LEN) {
1224
0
            LogDebug(BCLog::NET, "V2 transport error: packet too large (%u bytes), peer=%d\n", m_recv_len, m_nodeid);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1225
0
            return false;
1226
0
        }
1227
0
    } else if (m_recv_buffer.size() > BIP324Cipher::LENGTH_LEN && m_recv_buffer.size() == m_recv_len + BIP324Cipher::EXPANSION) {
1228
        // Ciphertext received, decrypt it into m_recv_decode_buffer.
1229
        // Note that it is impossible to reach this branch without hitting the branch above first,
1230
        // as GetMaxBytesToProcess only allows up to LENGTH_LEN into the buffer before that point.
1231
0
        m_recv_decode_buffer.resize(m_recv_len);
1232
0
        bool ignore{false};
1233
0
        bool ret = m_cipher.Decrypt(
1234
0
            /*input=*/MakeByteSpan(m_recv_buffer).subspan(BIP324Cipher::LENGTH_LEN),
1235
0
            /*aad=*/MakeByteSpan(m_recv_aad),
1236
0
            /*ignore=*/ignore,
1237
0
            /*contents=*/MakeWritableByteSpan(m_recv_decode_buffer));
1238
0
        if (!ret) {
1239
0
            LogDebug(BCLog::NET, "V2 transport error: packet decryption failure (%u bytes), peer=%d\n", m_recv_len, m_nodeid);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1240
0
            return false;
1241
0
        }
1242
        // We have decrypted a valid packet with the AAD we expected, so clear the expected AAD.
1243
0
        ClearShrink(m_recv_aad);
1244
        // Feed the last 4 bytes of the Poly1305 authentication tag (and its timing) into our RNG.
1245
0
        RandAddEvent(ReadLE32(m_recv_buffer.data() + m_recv_buffer.size() - 4));
1246
1247
        // At this point we have a valid packet decrypted into m_recv_decode_buffer. If it's not a
1248
        // decoy, which we simply ignore, use the current state to decide what to do with it.
1249
0
        if (!ignore) {
1250
0
            switch (m_recv_state) {
1251
0
            case RecvState::VERSION:
1252
                // Version message received; transition to application phase. The contents is
1253
                // ignored, but can be used for future extensions.
1254
0
                SetReceiveState(RecvState::APP);
1255
0
                break;
1256
0
            case RecvState::APP:
1257
                // Application message decrypted correctly. It can be extracted using GetMessage().
1258
0
                SetReceiveState(RecvState::APP_READY);
1259
0
                break;
1260
0
            default:
1261
                // Any other state is invalid (this function should not have been called).
1262
0
                Assume(false);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1263
0
            }
1264
0
        }
1265
        // Wipe the receive buffer where the next packet will be received into.
1266
0
        ClearShrink(m_recv_buffer);
1267
        // In all but APP_READY state, we can wipe the decoded contents.
1268
0
        if (m_recv_state != RecvState::APP_READY) ClearShrink(m_recv_decode_buffer);
1269
0
    } else {
1270
        // We either have less than 3 bytes, so we don't know the packet's length yet, or more
1271
        // than 3 bytes but less than the packet's full ciphertext. Wait until those arrive.
1272
0
    }
1273
0
    return true;
1274
0
}
1275
1276
size_t V2Transport::GetMaxBytesToProcess() noexcept
1277
0
{
1278
0
    AssertLockHeld(m_recv_mutex);
Line
Count
Source
144
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
1279
0
    switch (m_recv_state) {
1280
0
    case RecvState::KEY_MAYBE_V1:
1281
        // During the KEY_MAYBE_V1 state we do not allow more than the length of v1 prefix into the
1282
        // receive buffer.
1283
0
        Assume(m_recv_buffer.size() <= V1_PREFIX_LEN);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1284
        // As long as we're not sure if this is a v1 or v2 connection, don't receive more than what
1285
        // is strictly necessary to distinguish the two (16 bytes). If we permitted more than
1286
        // the v1 header size (24 bytes), we may not be able to feed the already-received bytes
1287
        // back into the m_v1_fallback V1 transport.
1288
0
        return V1_PREFIX_LEN - m_recv_buffer.size();
1289
0
    case RecvState::KEY:
1290
        // During the KEY state, we only allow the 64-byte key into the receive buffer.
1291
0
        Assume(m_recv_buffer.size() <= EllSwiftPubKey::size());
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1292
        // As long as we have not received the other side's public key, don't receive more than
1293
        // that (64 bytes), as garbage follows, and locating the garbage terminator requires the
1294
        // key exchange first.
1295
0
        return EllSwiftPubKey::size() - m_recv_buffer.size();
1296
0
    case RecvState::GARB_GARBTERM:
1297
        // Process garbage bytes one by one (because terminator may appear anywhere).
1298
0
        return 1;
1299
0
    case RecvState::VERSION:
1300
0
    case RecvState::APP:
1301
        // These three states all involve decoding a packet. Process the length descriptor first,
1302
        // so that we know where the current packet ends (and we don't process bytes from the next
1303
        // packet or decoy yet). Then, process the ciphertext bytes of the current packet.
1304
0
        if (m_recv_buffer.size() < BIP324Cipher::LENGTH_LEN) {
1305
0
            return BIP324Cipher::LENGTH_LEN - m_recv_buffer.size();
1306
0
        } else {
1307
            // Note that BIP324Cipher::EXPANSION is the total difference between contents size
1308
            // and encoded packet size, which includes the 3 bytes due to the packet length.
1309
            // When transitioning from receiving the packet length to receiving its ciphertext,
1310
            // the encrypted packet length is left in the receive buffer.
1311
0
            return BIP324Cipher::EXPANSION + m_recv_len - m_recv_buffer.size();
1312
0
        }
1313
0
    case RecvState::APP_READY:
1314
        // No bytes can be processed until GetMessage() is called.
1315
0
        return 0;
1316
0
    case RecvState::V1:
1317
        // Not allowed (must be dealt with by the caller).
1318
0
        Assume(false);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1319
0
        return 0;
1320
0
    }
1321
0
    Assume(false); // unreachable
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1322
0
    return 0;
1323
0
}
1324
1325
bool V2Transport::ReceivedBytes(std::span<const uint8_t>& msg_bytes) noexcept
1326
0
{
1327
0
    AssertLockNotHeld(m_recv_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1328
    /** How many bytes to allocate in the receive buffer at most above what is received so far. */
1329
0
    static constexpr size_t MAX_RESERVE_AHEAD = 256 * 1024;
1330
1331
0
    LOCK(m_recv_mutex);
Line
Count
Source
268
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
1332
0
    if (m_recv_state == RecvState::V1) return m_v1_fallback.ReceivedBytes(msg_bytes);
1333
1334
    // Process the provided bytes in msg_bytes in a loop. In each iteration a nonzero number of
1335
    // bytes (decided by GetMaxBytesToProcess) are taken from the beginning om msg_bytes, and
1336
    // appended to m_recv_buffer. Then, depending on the receiver state, one of the
1337
    // ProcessReceived*Bytes functions is called to process the bytes in that buffer.
1338
0
    while (!msg_bytes.empty()) {
1339
        // Decide how many bytes to copy from msg_bytes to m_recv_buffer.
1340
0
        size_t max_read = GetMaxBytesToProcess();
1341
1342
        // Reserve space in the buffer if there is not enough.
1343
0
        if (m_recv_buffer.size() + std::min(msg_bytes.size(), max_read) > m_recv_buffer.capacity()) {
1344
0
            switch (m_recv_state) {
1345
0
            case RecvState::KEY_MAYBE_V1:
1346
0
            case RecvState::KEY:
1347
0
            case RecvState::GARB_GARBTERM:
1348
                // During the initial states (key/garbage), allocate once to fit the maximum (4111
1349
                // bytes).
1350
0
                m_recv_buffer.reserve(MAX_GARBAGE_LEN + BIP324Cipher::GARBAGE_TERMINATOR_LEN);
1351
0
                break;
1352
0
            case RecvState::VERSION:
1353
0
            case RecvState::APP: {
1354
                // During states where a packet is being received, as much as is expected but never
1355
                // more than MAX_RESERVE_AHEAD bytes in addition to what is received so far.
1356
                // This means attackers that want to cause us to waste allocated memory are limited
1357
                // to MAX_RESERVE_AHEAD above the largest allowed message contents size, and to
1358
                // MAX_RESERVE_AHEAD more than they've actually sent us.
1359
0
                size_t alloc_add = std::min(max_read, msg_bytes.size() + MAX_RESERVE_AHEAD);
1360
0
                m_recv_buffer.reserve(m_recv_buffer.size() + alloc_add);
1361
0
                break;
1362
0
            }
1363
0
            case RecvState::APP_READY:
1364
                // The buffer is empty in this state.
1365
0
                Assume(m_recv_buffer.empty());
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1366
0
                break;
1367
0
            case RecvState::V1:
1368
                // Should have bailed out above.
1369
0
                Assume(false);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1370
0
                break;
1371
0
            }
1372
0
        }
1373
1374
        // Can't read more than provided input.
1375
0
        max_read = std::min(msg_bytes.size(), max_read);
1376
        // Copy data to buffer.
1377
0
        m_recv_buffer.insert(m_recv_buffer.end(), UCharCast(msg_bytes.data()), UCharCast(msg_bytes.data() + max_read));
1378
0
        msg_bytes = msg_bytes.subspan(max_read);
1379
1380
        // Process data in the buffer.
1381
0
        switch (m_recv_state) {
1382
0
        case RecvState::KEY_MAYBE_V1:
1383
0
            ProcessReceivedMaybeV1Bytes();
1384
0
            if (m_recv_state == RecvState::V1) return true;
1385
0
            break;
1386
1387
0
        case RecvState::KEY:
1388
0
            if (!ProcessReceivedKeyBytes()) return false;
1389
0
            break;
1390
1391
0
        case RecvState::GARB_GARBTERM:
1392
0
            if (!ProcessReceivedGarbageBytes()) return false;
1393
0
            break;
1394
1395
0
        case RecvState::VERSION:
1396
0
        case RecvState::APP:
1397
0
            if (!ProcessReceivedPacketBytes()) return false;
1398
0
            break;
1399
1400
0
        case RecvState::APP_READY:
1401
0
            return true;
1402
1403
0
        case RecvState::V1:
1404
            // We should have bailed out before.
1405
0
            Assume(false);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1406
0
            break;
1407
0
        }
1408
        // Make sure we have made progress before continuing.
1409
0
        Assume(max_read > 0);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1410
0
    }
1411
1412
0
    return true;
1413
0
}
1414
1415
std::optional<std::string> V2Transport::GetMessageType(std::span<const uint8_t>& contents) noexcept
1416
0
{
1417
0
    if (contents.size() == 0) return std::nullopt; // Empty contents
1418
0
    uint8_t first_byte = contents[0];
1419
0
    contents = contents.subspan(1); // Strip first byte.
1420
1421
0
    if (first_byte != 0) {
1422
        // Short (1 byte) encoding.
1423
0
        if (first_byte < std::size(V2_MESSAGE_IDS)) {
1424
            // Valid short message id.
1425
0
            return V2_MESSAGE_IDS[first_byte];
1426
0
        } else {
1427
            // Unknown short message id.
1428
0
            return std::nullopt;
1429
0
        }
1430
0
    }
1431
1432
0
    if (contents.size() < CMessageHeader::MESSAGE_TYPE_SIZE) {
1433
0
        return std::nullopt; // Long encoding needs 12 message type bytes.
1434
0
    }
1435
1436
0
    size_t msg_type_len{0};
1437
0
    while (msg_type_len < CMessageHeader::MESSAGE_TYPE_SIZE && contents[msg_type_len] != 0) {
1438
        // Verify that message type bytes before the first 0x00 are in range.
1439
0
        if (contents[msg_type_len] < ' ' || contents[msg_type_len] > 0x7F) {
1440
0
            return {};
1441
0
        }
1442
0
        ++msg_type_len;
1443
0
    }
1444
0
    std::string ret{reinterpret_cast<const char*>(contents.data()), msg_type_len};
1445
0
    while (msg_type_len < CMessageHeader::MESSAGE_TYPE_SIZE) {
1446
        // Verify that message type bytes after the first 0x00 are also 0x00.
1447
0
        if (contents[msg_type_len] != 0) return {};
1448
0
        ++msg_type_len;
1449
0
    }
1450
    // Strip message type bytes of contents.
1451
0
    contents = contents.subspan(CMessageHeader::MESSAGE_TYPE_SIZE);
1452
0
    return ret;
1453
0
}
1454
1455
CNetMessage V2Transport::GetReceivedMessage(std::chrono::microseconds time, bool& reject_message) noexcept
1456
0
{
1457
0
    AssertLockNotHeld(m_recv_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1458
0
    LOCK(m_recv_mutex);
Line
Count
Source
268
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
1459
0
    if (m_recv_state == RecvState::V1) return m_v1_fallback.GetReceivedMessage(time, reject_message);
1460
1461
0
    Assume(m_recv_state == RecvState::APP_READY);
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1462
0
    std::span<const uint8_t> contents{m_recv_decode_buffer};
1463
0
    auto msg_type = GetMessageType(contents);
1464
0
    CNetMessage msg{DataStream{}};
1465
    // Note that BIP324Cipher::EXPANSION also includes the length descriptor size.
1466
0
    msg.m_raw_message_size = m_recv_decode_buffer.size() + BIP324Cipher::EXPANSION;
1467
0
    if (msg_type) {
1468
0
        reject_message = false;
1469
0
        msg.m_type = std::move(*msg_type);
1470
0
        msg.m_time = time;
1471
0
        msg.m_message_size = contents.size();
1472
0
        msg.m_recv.resize(contents.size());
1473
0
        std::copy(contents.begin(), contents.end(), UCharCast(msg.m_recv.data()));
1474
0
    } else {
1475
0
        LogDebug(BCLog::NET, "V2 transport error: invalid message type (%u bytes contents), peer=%d\n", m_recv_decode_buffer.size(), m_nodeid);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1476
0
        reject_message = true;
1477
0
    }
1478
0
    ClearShrink(m_recv_decode_buffer);
1479
0
    SetReceiveState(RecvState::APP);
1480
1481
0
    return msg;
1482
0
}
1483
1484
bool V2Transport::SetMessageToSend(CSerializedNetMsg& msg) noexcept
1485
0
{
1486
0
    AssertLockNotHeld(m_send_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1487
0
    LOCK(m_send_mutex);
Line
Count
Source
268
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
1488
0
    if (m_send_state == SendState::V1) return m_v1_fallback.SetMessageToSend(msg);
1489
    // We only allow adding a new message to be sent when in the READY state (so the packet cipher
1490
    // is available) and the send buffer is empty. This limits the number of messages in the send
1491
    // buffer to just one, and leaves the responsibility for queueing them up to the caller.
1492
0
    if (!(m_send_state == SendState::READY && m_send_buffer.empty())) return false;
1493
    // Construct contents (encoding message type + payload).
1494
0
    std::vector<uint8_t> contents;
1495
0
    auto short_message_id = V2_MESSAGE_MAP(msg.m_type);
1496
0
    if (short_message_id) {
1497
0
        contents.resize(1 + msg.data.size());
1498
0
        contents[0] = *short_message_id;
1499
0
        std::copy(msg.data.begin(), msg.data.end(), contents.begin() + 1);
1500
0
    } else {
1501
        // Initialize with zeroes, and then write the message type string starting at offset 1.
1502
        // This means contents[0] and the unused positions in contents[1..13] remain 0x00.
1503
0
        contents.resize(1 + CMessageHeader::MESSAGE_TYPE_SIZE + msg.data.size(), 0);
1504
0
        std::copy(msg.m_type.begin(), msg.m_type.end(), contents.data() + 1);
1505
0
        std::copy(msg.data.begin(), msg.data.end(), contents.begin() + 1 + CMessageHeader::MESSAGE_TYPE_SIZE);
1506
0
    }
1507
    // Construct ciphertext in send buffer.
1508
0
    m_send_buffer.resize(contents.size() + BIP324Cipher::EXPANSION);
1509
0
    m_cipher.Encrypt(MakeByteSpan(contents), {}, false, MakeWritableByteSpan(m_send_buffer));
1510
0
    m_send_type = msg.m_type;
1511
    // Release memory
1512
0
    ClearShrink(msg.data);
1513
0
    return true;
1514
0
}
1515
1516
Transport::BytesToSend V2Transport::GetBytesToSend(bool have_next_message) const noexcept
1517
0
{
1518
0
    AssertLockNotHeld(m_send_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1519
0
    LOCK(m_send_mutex);
Line
Count
Source
268
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
1520
0
    if (m_send_state == SendState::V1) return m_v1_fallback.GetBytesToSend(have_next_message);
1521
1522
0
    if (m_send_state == SendState::MAYBE_V1) Assume(m_send_buffer.empty());
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1523
0
    Assume(m_send_pos <= m_send_buffer.size());
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1524
0
    return {
1525
0
        std::span{m_send_buffer}.subspan(m_send_pos),
1526
        // We only have more to send after the current m_send_buffer if there is a (next)
1527
        // message to be sent, and we're capable of sending packets. */
1528
0
        have_next_message && m_send_state == SendState::READY,
1529
0
        m_send_type
1530
0
    };
1531
0
}
1532
1533
void V2Transport::MarkBytesSent(size_t bytes_sent) noexcept
1534
0
{
1535
0
    AssertLockNotHeld(m_send_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1536
0
    LOCK(m_send_mutex);
Line
Count
Source
268
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
1537
0
    if (m_send_state == SendState::V1) return m_v1_fallback.MarkBytesSent(bytes_sent);
1538
1539
0
    if (m_send_state == SendState::AWAITING_KEY && m_send_pos == 0 && bytes_sent > 0) {
1540
0
        LogDebug(BCLog::NET, "start sending v2 handshake to peer=%d\n", m_nodeid);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1541
0
    }
1542
1543
0
    m_send_pos += bytes_sent;
1544
0
    Assume(m_send_pos <= m_send_buffer.size());
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1545
0
    if (m_send_pos >= CMessageHeader::HEADER_SIZE) {
1546
0
        m_sent_v1_header_worth = true;
1547
0
    }
1548
    // Wipe the buffer when everything is sent.
1549
0
    if (m_send_pos == m_send_buffer.size()) {
1550
0
        m_send_pos = 0;
1551
0
        ClearShrink(m_send_buffer);
1552
0
    }
1553
0
}
1554
1555
bool V2Transport::ShouldReconnectV1() const noexcept
1556
0
{
1557
0
    AssertLockNotHeld(m_send_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1558
0
    AssertLockNotHeld(m_recv_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1559
    // Only outgoing connections need reconnection.
1560
0
    if (!m_initiating) return false;
1561
1562
0
    LOCK(m_recv_mutex);
Line
Count
Source
268
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
1563
    // We only reconnect in the very first state and when the receive buffer is empty. Together
1564
    // these conditions imply nothing has been received so far.
1565
0
    if (m_recv_state != RecvState::KEY) return false;
1566
0
    if (!m_recv_buffer.empty()) return false;
1567
    // Check if we've sent enough for the other side to disconnect us (if it was V1).
1568
0
    LOCK(m_send_mutex);
Line
Count
Source
268
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
1569
0
    return m_sent_v1_header_worth;
1570
0
}
1571
1572
size_t V2Transport::GetSendMemoryUsage() const noexcept
1573
0
{
1574
0
    AssertLockNotHeld(m_send_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1575
0
    LOCK(m_send_mutex);
Line
Count
Source
268
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
1576
0
    if (m_send_state == SendState::V1) return m_v1_fallback.GetSendMemoryUsage();
1577
1578
0
    return sizeof(m_send_buffer) + memusage::DynamicUsage(m_send_buffer);
1579
0
}
1580
1581
Transport::Info V2Transport::GetInfo() const noexcept
1582
0
{
1583
0
    AssertLockNotHeld(m_recv_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1584
0
    LOCK(m_recv_mutex);
Line
Count
Source
268
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
1585
0
    if (m_recv_state == RecvState::V1) return m_v1_fallback.GetInfo();
1586
1587
0
    Transport::Info info;
1588
1589
    // Do not report v2 and session ID until the version packet has been received
1590
    // and verified (confirming that the other side very likely has the same keys as us).
1591
0
    if (m_recv_state != RecvState::KEY_MAYBE_V1 && m_recv_state != RecvState::KEY &&
1592
0
        m_recv_state != RecvState::GARB_GARBTERM && m_recv_state != RecvState::VERSION) {
1593
0
        info.transport_type = TransportProtocolType::V2;
1594
0
        info.session_id = uint256(MakeUCharSpan(m_cipher.GetSessionID()));
1595
0
    } else {
1596
0
        info.transport_type = TransportProtocolType::DETECTING;
1597
0
    }
1598
1599
0
    return info;
1600
0
}
1601
1602
std::pair<size_t, bool> CConnman::SocketSendData(CNode& node) const
1603
8.89k
{
1604
8.89k
    auto it = node.vSendMsg.begin();
1605
8.89k
    size_t nSentSize = 0;
1606
8.89k
    bool data_left{false}; //!< second return value (whether unsent data remains)
1607
8.89k
    std::optional<bool> expected_more;
1608
1609
18.9k
    while (true) {
1610
18.9k
        if (it != node.vSendMsg.end()) {
1611
            // If possible, move one message from the send queue to the transport. This fails when
1612
            // there is an existing message still being sent, or (for v2 transports) when the
1613
            // handshake has not yet completed.
1614
8.89k
            size_t memusage = it->GetMemoryUsage();
1615
8.89k
            if (node.m_transport->SetMessageToSend(*it)) {
1616
                // Update memory usage of send buffer (as *it will be deleted).
1617
8.89k
                node.m_send_memusage -= memusage;
1618
8.89k
                ++it;
1619
8.89k
            }
1620
8.89k
        }
1621
18.9k
        const auto& [data, more, msg_type] = node.m_transport->GetBytesToSend(it != node.vSendMsg.end());
1622
        // We rely on the 'more' value returned by GetBytesToSend to correctly predict whether more
1623
        // bytes are still to be sent, to correctly set the MSG_MORE flag. As a sanity check,
1624
        // verify that the previously returned 'more' was correct.
1625
18.9k
        if (expected_more.has_value()) 
Assume10.0k
(!data.empty() == *expected_more);
Line
Count
Source
128
10.0k
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
1626
18.9k
        expected_more = more;
1627
18.9k
        data_left = !data.empty(); // will be overwritten on next loop if all of data gets sent
1628
18.9k
        int nBytes = 0;
1629
18.9k
        if (!data.empty()) {
1630
12.0k
            LOCK(node.m_sock_mutex);
Line
Count
Source
268
12.0k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
12.0k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
12.0k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
12.0k
#define PASTE(x, y) x ## y
1631
            // There is no socket in case we've already disconnected, or in test cases without
1632
            // real connections. In these cases, we bail out immediately and just leave things
1633
            // in the send queue and transport.
1634
12.0k
            if (!node.m_sock) {
1635
0
                break;
1636
0
            }
1637
12.0k
            int flags = MSG_NOSIGNAL | MSG_DONTWAIT;
1638
#ifdef MSG_MORE
1639
            if (more) {
1640
                flags |= MSG_MORE;
1641
            }
1642
#endif
1643
12.0k
            nBytes = node.m_sock->Send(data.data(), data.size(), flags);
1644
12.0k
        }
1645
18.9k
        if (nBytes > 0) {
1646
11.2k
            node.m_last_send = GetTime<std::chrono::seconds>();
1647
11.2k
            node.nSendBytes += nBytes;
1648
            // Notify transport that bytes have been processed.
1649
11.2k
            node.m_transport->MarkBytesSent(nBytes);
1650
            // Update statistics per message type.
1651
11.2k
            if (!msg_type.empty()) { // don't report v2 handshake bytes for now
1652
11.2k
                node.AccountForSentBytes(msg_type, nBytes);
1653
11.2k
            }
1654
11.2k
            nSentSize += nBytes;
1655
11.2k
            if ((size_t)nBytes != data.size()) {
1656
                // could not send full message; stop sending more
1657
1.19k
                break;
1658
1.19k
            }
1659
11.2k
        } else {
1660
7.69k
            if (nBytes < 0) {
1661
                // error
1662
555
                int nErr = WSAGetLastError();
Line
Count
Source
59
555
#define WSAGetLastError()   errno
1663
555
                if (nErr != WSAEWOULDBLOCK && 
nErr != 423
WSAEMSGSIZE423
&&
nErr != 414
WSAEINTR414
&&
nErr != 407
WSAEINPROGRESS407
) {
Line
Count
Source
61
1.11k
#define WSAEWOULDBLOCK      EWOULDBLOCK
                if (nErr != WSAEWOULDBLOCK && 
nErr != 423
WSAEMSGSIZE423
&&
nErr != 414
WSAEINTR414
&&
nErr != 407
WSAEINPROGRESS407
) {
Line
Count
Source
63
978
#define WSAEMSGSIZE         EMSGSIZE
                if (nErr != WSAEWOULDBLOCK && 
nErr != 423
WSAEMSGSIZE423
&&
nErr != 414
WSAEINTR414
&&
nErr != 407
WSAEINPROGRESS407
) {
Line
Count
Source
64
969
#define WSAEINTR            EINTR
                if (nErr != WSAEWOULDBLOCK && 
nErr != 423
WSAEMSGSIZE423
&&
nErr != 414
WSAEINTR414
&&
nErr != 407
WSAEINPROGRESS407
) {
Line
Count
Source
65
407
#define WSAEINPROGRESS      EINPROGRESS
1664
407
                    LogDebug(BCLog::NET, "socket send error, %s: %s", node.DisconnectMsg(), NetworkErrorString(nErr));
Line
Count
Source
117
407
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
407
    do {                                                               \
109
407
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
407
    } while (0)
1665
407
                    node.CloseSocketDisconnect();
1666
407
                }
1667
555
            }
1668
7.69k
            break;
1669
7.69k
        }
1670
18.9k
    }
1671
1672
8.89k
    node.fPauseSend = node.m_send_memusage + node.m_transport->GetSendMemoryUsage() > nSendBufferMaxSize;
1673
1674
8.89k
    if (it == node.vSendMsg.end()) {
1675
8.89k
        assert(node.m_send_memusage == 0);
1676
8.89k
    }
1677
8.89k
    node.vSendMsg.erase(node.vSendMsg.begin(), it);
1678
8.89k
    return {nSentSize, data_left};
1679
8.89k
}
1680
1681
/** Try to find a connection to evict when the node is full.
1682
 *  Extreme care must be taken to avoid opening the node to attacker
1683
 *   triggered network partitioning.
1684
 *  The strategy used here is to protect a small number of peers
1685
 *   for each of several distinct characteristics which are difficult
1686
 *   to forge.  In order to partition a node the attacker must be
1687
 *   simultaneously better at all of them than honest peers.
1688
 */
1689
bool CConnman::AttemptToEvictConnection()
1690
0
{
1691
0
    std::vector<NodeEvictionCandidate> vEvictionCandidates;
1692
0
    {
1693
1694
0
        LOCK(m_nodes_mutex);
Line
Count
Source
268
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
1695
0
        for (const CNode* node : m_nodes) {
1696
0
            if (node->fDisconnect)
1697
0
                continue;
1698
0
            NodeEvictionCandidate candidate{
1699
0
                .id = node->GetId(),
1700
0
                .m_connected = node->m_connected,
1701
0
                .m_min_ping_time = node->m_min_ping_time,
1702
0
                .m_last_block_time = node->m_last_block_time,
1703
0
                .m_last_tx_time = node->m_last_tx_time,
1704
0
                .fRelevantServices = node->m_has_all_wanted_services,
1705
0
                .m_relay_txs = node->m_relays_txs.load(),
1706
0
                .fBloomFilter = node->m_bloom_filter_loaded.load(),
1707
0
                .nKeyedNetGroup = node->nKeyedNetGroup,
1708
0
                .prefer_evict = node->m_prefer_evict,
1709
0
                .m_is_local = node->addr.IsLocal(),
1710
0
                .m_network = node->ConnectedThroughNetwork(),
1711
0
                .m_noban = node->HasPermission(NetPermissionFlags::NoBan),
1712
0
                .m_conn_type = node->m_conn_type,
1713
0
            };
1714
0
            vEvictionCandidates.push_back(candidate);
1715
0
        }
1716
0
    }
1717
0
    const std::optional<NodeId> node_id_to_evict = SelectNodeToEvict(std::move(vEvictionCandidates));
1718
0
    if (!node_id_to_evict) {
1719
0
        return false;
1720
0
    }
1721
0
    LOCK(m_nodes_mutex);
Line
Count
Source
268
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
1722
0
    for (CNode* pnode : m_nodes) {
1723
0
        if (pnode->GetId() == *node_id_to_evict) {
1724
0
            LogDebug(BCLog::NET, "selected %s connection for eviction, %s", pnode->ConnectionTypeAsString(), pnode->DisconnectMsg());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1725
0
            TRACEPOINT(net, evicted_inbound_connection,
1726
0
                pnode->GetId(),
1727
0
                pnode->m_addr_name.c_str(),
1728
0
                pnode->ConnectionTypeAsString().c_str(),
1729
0
                pnode->ConnectedThroughNetwork(),
1730
0
                Ticks<std::chrono::seconds>(pnode->m_connected));
1731
0
            pnode->fDisconnect = true;
1732
0
            return true;
1733
0
        }
1734
0
    }
1735
0
    return false;
1736
0
}
1737
1738
0
void CConnman::AcceptConnection(const ListenSocket& hListenSocket) {
1739
0
    struct sockaddr_storage sockaddr;
1740
0
    socklen_t len = sizeof(sockaddr);
1741
0
    auto sock = hListenSocket.sock->Accept((struct sockaddr*)&sockaddr, &len);
1742
1743
0
    if (!sock) {
1744
0
        const int nErr = WSAGetLastError();
Line
Count
Source
59
0
#define WSAGetLastError()   errno
1745
0
        if (nErr != WSAEWOULDBLOCK) {
Line
Count
Source
61
0
#define WSAEWOULDBLOCK      EWOULDBLOCK
1746
0
            LogInfo("socket error accept failed: %s\n", NetworkErrorString(nErr));
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
1747
0
        }
1748
0
        return;
1749
0
    }
1750
1751
0
    CService addr;
1752
0
    if (!addr.SetSockAddr((const struct sockaddr*)&sockaddr, len)) {
1753
0
        LogWarning("Unknown socket family\n");
Line
Count
Source
98
0
#define LogWarning(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Warning, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
1754
0
    } else {
1755
0
        addr = MaybeFlipIPv6toCJDNS(addr);
1756
0
    }
1757
1758
0
    const CService addr_bind{MaybeFlipIPv6toCJDNS(GetBindAddress(*sock))};
1759
1760
0
    NetPermissionFlags permission_flags = NetPermissionFlags::None;
1761
0
    hListenSocket.AddSocketPermissionFlags(permission_flags);
1762
1763
0
    CreateNodeFromAcceptedSocket(std::move(sock), permission_flags, addr_bind, addr);
1764
0
}
1765
1766
void CConnman::CreateNodeFromAcceptedSocket(std::unique_ptr<Sock>&& sock,
1767
                                            NetPermissionFlags permission_flags,
1768
                                            const CService& addr_bind,
1769
                                            const CService& addr)
1770
0
{
1771
0
    int nInbound = 0;
1772
1773
0
    const bool inbound_onion = std::find(m_onion_binds.begin(), m_onion_binds.end(), addr_bind) != m_onion_binds.end();
1774
1775
    // Tor inbound connections do not reveal the peer's actual network address.
1776
    // Therefore do not apply address-based whitelist permissions to them.
1777
0
    AddWhitelistPermissionFlags(permission_flags, inbound_onion ? std::optional<CNetAddr>{} : addr, vWhitelistedRangeIncoming);
1778
1779
0
    {
1780
0
        LOCK(m_nodes_mutex);
Line
Count
Source
268
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
1781
0
        for (const CNode* pnode : m_nodes) {
1782
0
            if (pnode->IsInboundConn()) nInbound++;
1783
0
        }
1784
0
    }
1785
1786
0
    if (!fNetworkActive) {
1787
0
        LogDebug(BCLog::NET, "connection from %s dropped: not accepting new connections\n", addr.ToStringAddrPort());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1788
0
        return;
1789
0
    }
1790
1791
0
    if (!sock->IsSelectable()) {
1792
0
        LogInfo("connection from %s dropped: non-selectable socket\n", addr.ToStringAddrPort());
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
1793
0
        return;
1794
0
    }
1795
1796
    // According to the internet TCP_NODELAY is not carried into accepted sockets
1797
    // on all platforms.  Set it again here just to be sure.
1798
0
    const int on{1};
1799
0
    if (sock->SetSockOpt(IPPROTO_TCP, TCP_NODELAY, &on, sizeof(on)) == SOCKET_ERROR) {
Line
Count
Source
68
0
#define SOCKET_ERROR        -1
1800
0
        LogDebug(BCLog::NET, "connection from %s: unable to set TCP_NODELAY, continuing anyway\n",
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1801
0
                 addr.ToStringAddrPort());
1802
0
    }
1803
1804
    // Don't accept connections from banned peers.
1805
0
    bool banned = m_banman && m_banman->IsBanned(addr);
1806
0
    if (!NetPermissions::HasFlag(permission_flags, NetPermissionFlags::NoBan) && banned)
1807
0
    {
1808
0
        LogDebug(BCLog::NET, "connection from %s dropped (banned)\n", addr.ToStringAddrPort());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1809
0
        return;
1810
0
    }
1811
1812
    // Only accept connections from discouraged peers if our inbound slots aren't (almost) full.
1813
0
    bool discouraged = m_banman && m_banman->IsDiscouraged(addr);
1814
0
    if (!NetPermissions::HasFlag(permission_flags, NetPermissionFlags::NoBan) && nInbound + 1 >= m_max_inbound && discouraged)
1815
0
    {
1816
0
        LogDebug(BCLog::NET, "connection from %s dropped (discouraged)\n", addr.ToStringAddrPort());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1817
0
        return;
1818
0
    }
1819
1820
0
    if (nInbound >= m_max_inbound)
1821
0
    {
1822
0
        if (!AttemptToEvictConnection()) {
1823
            // No connection to evict, disconnect the new connection
1824
0
            LogDebug(BCLog::NET, "failed to find an eviction candidate - connection dropped (full)\n");
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1825
0
            return;
1826
0
        }
1827
0
    }
1828
1829
0
    NodeId id = GetNewNodeId();
1830
0
    uint64_t nonce = GetDeterministicRandomizer(RANDOMIZER_ID_LOCALHOSTNONCE).Write(id).Finalize();
1831
1832
    // The V2Transport transparently falls back to V1 behavior when an incoming V1 connection is
1833
    // detected, so use it whenever we signal NODE_P2P_V2.
1834
0
    ServiceFlags local_services = GetLocalServices();
1835
0
    const bool use_v2transport(local_services & NODE_P2P_V2);
1836
1837
0
    uint64_t network_id = GetDeterministicRandomizer(RANDOMIZER_ID_NETWORKKEY)
1838
0
                        .Write(inbound_onion ? NET_ONION : addr.GetNetClass())
1839
0
                        .Write(addr_bind.GetAddrBytes())
1840
0
                        .Write(addr_bind.GetPort()) // inbound connections use bind port
1841
0
                        .Finalize();
1842
0
    CNode* pnode = new CNode(id,
1843
0
                             std::move(sock),
1844
0
                             CAddress{addr, NODE_NONE},
1845
0
                             CalculateKeyedNetGroup(addr),
1846
0
                             nonce,
1847
0
                             addr_bind,
1848
0
                             /*addrNameIn=*/"",
1849
0
                             ConnectionType::INBOUND,
1850
0
                             inbound_onion,
1851
0
                             network_id,
1852
0
                             CNodeOptions{
1853
0
                                 .permission_flags = permission_flags,
1854
0
                                 .prefer_evict = discouraged,
1855
0
                                 .recv_flood_size = nReceiveFloodSize,
1856
0
                                 .use_v2transport = use_v2transport,
1857
0
                             });
1858
0
    pnode->AddRef();
1859
0
    m_msgproc->InitializeNode(*pnode, local_services);
1860
0
    {
1861
0
        LOCK(m_nodes_mutex);
Line
Count
Source
268
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
1862
0
        m_nodes.push_back(pnode);
1863
0
    }
1864
0
    LogDebug(BCLog::NET, "connection from %s accepted\n", addr.ToStringAddrPort());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1865
0
    TRACEPOINT(net, inbound_connection,
1866
0
        pnode->GetId(),
1867
0
        pnode->m_addr_name.c_str(),
1868
0
        pnode->ConnectionTypeAsString().c_str(),
1869
0
        pnode->ConnectedThroughNetwork(),
1870
0
        GetNodeCount(ConnectionDirection::In));
1871
1872
    // We received a new connection, harvest entropy from the time (and our peer count)
1873
0
    RandAddEvent((uint32_t)id);
1874
0
}
1875
1876
bool CConnman::AddConnection(const std::string& address, ConnectionType conn_type, bool use_v2transport = false)
1877
0
{
1878
0
    AssertLockNotHeld(m_unused_i2p_sessions_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1879
0
    std::optional<int> max_connections;
1880
0
    switch (conn_type) {
1881
0
    case ConnectionType::INBOUND:
1882
0
    case ConnectionType::MANUAL:
1883
0
    case ConnectionType::PRIVATE_BROADCAST:
1884
0
        return false;
1885
0
    case ConnectionType::OUTBOUND_FULL_RELAY:
1886
0
        max_connections = m_max_outbound_full_relay;
1887
0
        break;
1888
0
    case ConnectionType::BLOCK_RELAY:
1889
0
        max_connections = m_max_outbound_block_relay;
1890
0
        break;
1891
    // no limit for ADDR_FETCH because -seednode has no limit either
1892
0
    case ConnectionType::ADDR_FETCH:
1893
0
        break;
1894
    // no limit for FEELER connections since they're short-lived
1895
0
    case ConnectionType::FEELER:
1896
0
        break;
1897
0
    } // no default case, so the compiler can warn about missing cases
1898
1899
    // Count existing connections
1900
0
    int existing_connections = WITH_LOCK(m_nodes_mutex,
Line
Count
Source
299
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
1901
0
                                         return std::count_if(m_nodes.begin(), m_nodes.end(), [conn_type](CNode* node) { return node->m_conn_type == conn_type; }););
1902
1903
    // Max connections of specified type already exist
1904
0
    if (max_connections != std::nullopt && existing_connections >= max_connections) return false;
1905
1906
    // Max total outbound connections already exist
1907
0
    CountingSemaphoreGrant<> grant(*semOutbound, true);
1908
0
    if (!grant) return false;
1909
1910
0
    OpenNetworkConnection(CAddress(), false, std::move(grant), address.c_str(), conn_type, /*use_v2transport=*/use_v2transport);
1911
0
    return true;
1912
0
}
1913
1914
void CConnman::DisconnectNodes()
1915
0
{
1916
0
    AssertLockNotHeld(m_nodes_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1917
0
    AssertLockNotHeld(m_reconnections_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
1918
1919
    // Use a temporary variable to accumulate desired reconnections, so we don't need
1920
    // m_reconnections_mutex while holding m_nodes_mutex.
1921
0
    decltype(m_reconnections) reconnections_to_add;
1922
1923
0
    {
1924
0
        LOCK(m_nodes_mutex);
Line
Count
Source
268
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
1925
1926
0
        const bool network_active{fNetworkActive};
1927
0
        if (!network_active) {
1928
            // Disconnect any connected nodes
1929
0
            for (CNode* pnode : m_nodes) {
1930
0
                if (!pnode->fDisconnect) {
1931
0
                    LogDebug(BCLog::NET, "Network not active, %s", pnode->DisconnectMsg());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1932
0
                    pnode->fDisconnect = true;
1933
0
                }
1934
0
            }
1935
0
        }
1936
1937
        // Disconnect unused nodes
1938
0
        std::vector<CNode*> nodes_copy = m_nodes;
1939
0
        for (CNode* pnode : nodes_copy)
1940
0
        {
1941
0
            if (pnode->fDisconnect)
1942
0
            {
1943
                // remove from m_nodes
1944
0
                m_nodes.erase(remove(m_nodes.begin(), m_nodes.end(), pnode), m_nodes.end());
1945
1946
                // Add to reconnection list if appropriate. We don't reconnect right here, because
1947
                // the creation of a connection is a blocking operation (up to several seconds),
1948
                // and we don't want to hold up the socket handler thread for that long.
1949
0
                if (network_active && pnode->m_transport->ShouldReconnectV1()) {
1950
0
                    reconnections_to_add.push_back({
1951
0
                        .addr_connect = pnode->addr,
1952
0
                        .grant = std::move(pnode->grantOutbound),
1953
0
                        .destination = pnode->m_dest,
1954
0
                        .conn_type = pnode->m_conn_type,
1955
0
                        .use_v2transport = false});
1956
0
                    LogDebug(BCLog::NET, "retrying with v1 transport protocol for peer=%d\n", pnode->GetId());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
1957
0
                }
1958
1959
                // release outbound grant (if any)
1960
0
                pnode->grantOutbound.Release();
1961
1962
                // close socket and cleanup
1963
0
                pnode->CloseSocketDisconnect();
1964
1965
                // update connection count by network
1966
0
                if (pnode->IsManualOrFullOutboundConn()) --m_network_conn_counts[pnode->addr.GetNetwork()];
1967
1968
                // hold in disconnected pool until all refs are released
1969
0
                pnode->Release();
1970
0
                m_nodes_disconnected.push_back(pnode);
1971
0
            }
1972
0
        }
1973
0
    }
1974
0
    {
1975
        // Delete disconnected nodes
1976
0
        std::list<CNode*> nodes_disconnected_copy = m_nodes_disconnected;
1977
0
        for (CNode* pnode : nodes_disconnected_copy)
1978
0
        {
1979
            // Destroy the object only after other threads have stopped using it.
1980
0
            if (pnode->GetRefCount() <= 0) {
1981
0
                m_nodes_disconnected.remove(pnode);
1982
0
                DeleteNode(pnode);
1983
0
            }
1984
0
        }
1985
0
    }
1986
0
    {
1987
        // Move entries from reconnections_to_add to m_reconnections.
1988
0
        LOCK(m_reconnections_mutex);
Line
Count
Source
268
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
1989
0
        m_reconnections.splice(m_reconnections.end(), std::move(reconnections_to_add));
1990
0
    }
1991
0
}
1992
1993
void CConnman::NotifyNumConnectionsChanged()
1994
0
{
1995
0
    size_t nodes_size;
1996
0
    {
1997
0
        LOCK(m_nodes_mutex);
Line
Count
Source
268
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
1998
0
        nodes_size = m_nodes.size();
1999
0
    }
2000
0
    if(nodes_size != nPrevNodeCount) {
2001
0
        nPrevNodeCount = nodes_size;
2002
0
        if (m_client_interface) {
2003
0
            m_client_interface->NotifyNumConnectionsChanged(nodes_size);
2004
0
        }
2005
0
    }
2006
0
}
2007
2008
bool CConnman::ShouldRunInactivityChecks(const CNode& node, std::chrono::microseconds now) const
2009
7.22k
{
2010
7.22k
    return node.m_connected + m_peer_connect_timeout < now;
2011
7.22k
}
2012
2013
bool CConnman::InactivityCheck(const CNode& node, std::chrono::microseconds now) const
2014
0
{
2015
    // Tests that see disconnects after using mocktime can start nodes with a
2016
    // large timeout. For example, -peertimeout=999999999.
2017
0
    const auto last_send{node.m_last_send.load()};
2018
0
    const auto last_recv{node.m_last_recv.load()};
2019
2020
0
    if (!ShouldRunInactivityChecks(node, now)) return false;
2021
2022
0
    bool has_received{last_recv.count() != 0};
2023
0
    bool has_sent{last_send.count() != 0};
2024
2025
0
    if (!has_received || !has_sent) {
2026
0
        std::string has_never;
2027
0
        if (!has_received) has_never += ", never received from peer";
2028
0
        if (!has_sent) has_never += ", never sent to peer";
2029
0
        LogDebug(BCLog::NET,
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2030
0
            "socket no message in first %i seconds%s, %s",
2031
0
            count_seconds(m_peer_connect_timeout),
2032
0
            has_never,
2033
0
            node.DisconnectMsg()
2034
0
        );
2035
0
        return true;
2036
0
    }
2037
2038
0
    if (now > last_send + TIMEOUT_INTERVAL) {
2039
0
        LogDebug(BCLog::NET,
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2040
0
            "socket sending timeout: %is, %s", Ticks<std::chrono::seconds>(now - last_send),
2041
0
            node.DisconnectMsg()
2042
0
        );
2043
0
        return true;
2044
0
    }
2045
2046
0
    if (now > last_recv + TIMEOUT_INTERVAL) {
2047
0
        LogDebug(BCLog::NET,
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2048
0
            "socket receive timeout: %is, %s", Ticks<std::chrono::seconds>(now - last_recv),
2049
0
            node.DisconnectMsg()
2050
0
        );
2051
0
        return true;
2052
0
    }
2053
2054
0
    if (!node.fSuccessfullyConnected) {
2055
0
        if (node.m_transport->GetInfo().transport_type == TransportProtocolType::DETECTING) {
2056
0
            LogDebug(BCLog::NET, "V2 handshake timeout, %s", node.DisconnectMsg());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2057
0
        } else {
2058
0
            LogDebug(BCLog::NET, "version handshake timeout, %s", node.DisconnectMsg());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2059
0
        }
2060
0
        return true;
2061
0
    }
2062
2063
0
    return false;
2064
0
}
2065
2066
Sock::EventsPerSock CConnman::GenerateWaitSockets(std::span<CNode* const> nodes)
2067
0
{
2068
0
    Sock::EventsPerSock events_per_sock;
2069
2070
0
    for (const ListenSocket& hListenSocket : vhListenSocket) {
2071
0
        events_per_sock.emplace(hListenSocket.sock, Sock::Events{Sock::RECV});
2072
0
    }
2073
2074
0
    for (CNode* pnode : nodes) {
2075
0
        bool select_recv = !pnode->fPauseRecv;
2076
0
        bool select_send;
2077
0
        {
2078
0
            LOCK(pnode->cs_vSend);
Line
Count
Source
268
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
2079
            // Sending is possible if either there are bytes to send right now, or if there will be
2080
            // once a potential message from vSendMsg is handed to the transport. GetBytesToSend
2081
            // determines both of these in a single call.
2082
0
            const auto& [to_send, more, _msg_type] = pnode->m_transport->GetBytesToSend(!pnode->vSendMsg.empty());
2083
0
            select_send = !to_send.empty() || more;
2084
0
        }
2085
0
        if (!select_recv && !select_send) continue;
2086
2087
0
        LOCK(pnode->m_sock_mutex);
Line
Count
Source
268
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
2088
0
        if (pnode->m_sock) {
2089
0
            Sock::Event event = (select_send ? Sock::SEND : 0) | (select_recv ? Sock::RECV : 0);
2090
0
            events_per_sock.emplace(pnode->m_sock, Sock::Events{event});
2091
0
        }
2092
0
    }
2093
2094
0
    return events_per_sock;
2095
0
}
2096
2097
void CConnman::SocketHandler()
2098
0
{
2099
0
    AssertLockNotHeld(m_total_bytes_sent_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
2100
2101
0
    Sock::EventsPerSock events_per_sock;
2102
2103
0
    {
2104
0
        const NodesSnapshot snap{*this, /*shuffle=*/false};
2105
2106
0
        const auto timeout = std::chrono::milliseconds(SELECT_TIMEOUT_MILLISECONDS);
2107
2108
        // Check for the readiness of the already connected sockets and the
2109
        // listening sockets in one call ("readiness" as in poll(2) or
2110
        // select(2)). If none are ready, wait for a short while and return
2111
        // empty sets.
2112
0
        events_per_sock = GenerateWaitSockets(snap.Nodes());
2113
0
        if (events_per_sock.empty() || !events_per_sock.begin()->first->WaitMany(timeout, events_per_sock)) {
2114
0
            m_interrupt_net->sleep_for(timeout);
2115
0
        }
2116
2117
        // Service (send/receive) each of the already connected nodes.
2118
0
        SocketHandlerConnected(snap.Nodes(), events_per_sock);
2119
0
    }
2120
2121
    // Accept new connections from listening sockets.
2122
0
    SocketHandlerListening(events_per_sock);
2123
0
}
2124
2125
void CConnman::SocketHandlerConnected(const std::vector<CNode*>& nodes,
2126
                                      const Sock::EventsPerSock& events_per_sock)
2127
0
{
2128
0
    AssertLockNotHeld(m_total_bytes_sent_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
2129
2130
0
    auto now = GetTime<std::chrono::microseconds>();
2131
2132
0
    for (CNode* pnode : nodes) {
2133
0
        if (m_interrupt_net->interrupted()) {
2134
0
            return;
2135
0
        }
2136
2137
        //
2138
        // Receive
2139
        //
2140
0
        bool recvSet = false;
2141
0
        bool sendSet = false;
2142
0
        bool errorSet = false;
2143
0
        {
2144
0
            LOCK(pnode->m_sock_mutex);
Line
Count
Source
268
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
2145
0
            if (!pnode->m_sock) {
2146
0
                continue;
2147
0
            }
2148
0
            const auto it = events_per_sock.find(pnode->m_sock);
2149
0
            if (it != events_per_sock.end()) {
2150
0
                recvSet = it->second.occurred & Sock::RECV;
2151
0
                sendSet = it->second.occurred & Sock::SEND;
2152
0
                errorSet = it->second.occurred & Sock::ERR;
2153
0
            }
2154
0
        }
2155
2156
0
        if (sendSet) {
2157
            // Send data
2158
0
            auto [bytes_sent, data_left] = WITH_LOCK(pnode->cs_vSend, return SocketSendData(*pnode));
Line
Count
Source
299
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
2159
0
            if (bytes_sent) {
2160
0
                RecordBytesSent(bytes_sent);
2161
2162
                // If both receiving and (non-optimistic) sending were possible, we first attempt
2163
                // sending. If that succeeds, but does not fully drain the send queue, do not
2164
                // attempt to receive. This avoids needlessly queueing data if the remote peer
2165
                // is slow at receiving data, by means of TCP flow control. We only do this when
2166
                // sending actually succeeded to make sure progress is always made; otherwise a
2167
                // deadlock would be possible when both sides have data to send, but neither is
2168
                // receiving.
2169
0
                if (data_left) recvSet = false;
2170
0
            }
2171
0
        }
2172
2173
0
        if (recvSet || errorSet)
2174
0
        {
2175
            // typical socket buffer is 8K-64K
2176
0
            uint8_t pchBuf[0x10000];
2177
0
            int nBytes = 0;
2178
0
            {
2179
0
                LOCK(pnode->m_sock_mutex);
Line
Count
Source
268
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
                if (!pnode->m_sock) {
2181
0
                    continue;
2182
0
                }
2183
0
                nBytes = pnode->m_sock->Recv(pchBuf, sizeof(pchBuf), MSG_DONTWAIT);
2184
0
            }
2185
0
            if (nBytes > 0)
2186
0
            {
2187
0
                bool notify = false;
2188
0
                if (!pnode->ReceiveMsgBytes({pchBuf, (size_t)nBytes}, notify)) {
2189
0
                    LogDebug(BCLog::NET,
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2190
0
                        "receiving message bytes failed, %s",
2191
0
                        pnode->DisconnectMsg()
2192
0
                    );
2193
0
                    pnode->CloseSocketDisconnect();
2194
0
                }
2195
0
                RecordBytesRecv(nBytes);
2196
0
                if (notify) {
2197
0
                    pnode->MarkReceivedMsgsForProcessing();
2198
0
                    WakeMessageHandler();
2199
0
                }
2200
0
            }
2201
0
            else if (nBytes == 0)
2202
0
            {
2203
                // socket closed gracefully
2204
0
                if (!pnode->fDisconnect) {
2205
0
                    LogDebug(BCLog::NET, "socket closed, %s", pnode->DisconnectMsg());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2206
0
                }
2207
0
                pnode->CloseSocketDisconnect();
2208
0
            }
2209
0
            else if (nBytes < 0)
2210
0
            {
2211
                // error
2212
0
                int nErr = WSAGetLastError();
Line
Count
Source
59
0
#define WSAGetLastError()   errno
2213
0
                if (nErr != WSAEWOULDBLOCK && nErr != WSAEMSGSIZE && nErr != WSAEINTR && nErr != WSAEINPROGRESS)
Line
Count
Source
61
0
#define WSAEWOULDBLOCK      EWOULDBLOCK
                if (nErr != WSAEWOULDBLOCK && nErr != WSAEMSGSIZE && nErr != WSAEINTR && nErr != WSAEINPROGRESS)
Line
Count
Source
63
0
#define WSAEMSGSIZE         EMSGSIZE
                if (nErr != WSAEWOULDBLOCK && nErr != WSAEMSGSIZE && nErr != WSAEINTR && nErr != WSAEINPROGRESS)
Line
Count
Source
64
0
#define WSAEINTR            EINTR
                if (nErr != WSAEWOULDBLOCK && nErr != WSAEMSGSIZE && nErr != WSAEINTR && nErr != WSAEINPROGRESS)
Line
Count
Source
65
0
#define WSAEINPROGRESS      EINPROGRESS
2214
0
                {
2215
0
                    if (!pnode->fDisconnect) {
2216
0
                        LogDebug(BCLog::NET, "socket recv error, %s: %s", pnode->DisconnectMsg(), NetworkErrorString(nErr));
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2217
0
                    }
2218
0
                    pnode->CloseSocketDisconnect();
2219
0
                }
2220
0
            }
2221
0
        }
2222
2223
0
        if (InactivityCheck(*pnode, now)) pnode->fDisconnect = true;
2224
0
    }
2225
0
}
2226
2227
void CConnman::SocketHandlerListening(const Sock::EventsPerSock& events_per_sock)
2228
0
{
2229
0
    for (const ListenSocket& listen_socket : vhListenSocket) {
2230
0
        if (m_interrupt_net->interrupted()) {
2231
0
            return;
2232
0
        }
2233
0
        const auto it = events_per_sock.find(listen_socket.sock);
2234
0
        if (it != events_per_sock.end() && it->second.occurred & Sock::RECV) {
2235
0
            AcceptConnection(listen_socket);
2236
0
        }
2237
0
    }
2238
0
}
2239
2240
void CConnman::ThreadSocketHandler()
2241
0
{
2242
0
    AssertLockNotHeld(m_total_bytes_sent_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
2243
2244
0
    while (!m_interrupt_net->interrupted()) {
2245
0
        DisconnectNodes();
2246
0
        NotifyNumConnectionsChanged();
2247
0
        SocketHandler();
2248
0
    }
2249
0
}
2250
2251
void CConnman::WakeMessageHandler()
2252
0
{
2253
0
    {
2254
0
        LOCK(mutexMsgProc);
Line
Count
Source
268
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
2255
0
        fMsgProcWake = true;
2256
0
    }
2257
0
    condMsgProc.notify_one();
2258
0
}
2259
2260
void CConnman::ThreadDNSAddressSeed()
2261
0
{
2262
0
    int outbound_connection_count = 0;
2263
2264
0
    if (!gArgs.GetArgs("-seednode").empty()) {
2265
0
        auto start = NodeClock::now();
2266
0
        constexpr std::chrono::seconds SEEDNODE_TIMEOUT = 30s;
2267
0
        LogInfo("-seednode enabled. Trying the provided seeds for %d seconds before defaulting to the dnsseeds.\n", SEEDNODE_TIMEOUT.count());
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2268
0
        while (!m_interrupt_net->interrupted()) {
2269
0
            if (!m_interrupt_net->sleep_for(500ms)) {
2270
0
                return;
2271
0
            }
2272
2273
            // Abort if we have spent enough time without reaching our target.
2274
            // Giving seed nodes 30 seconds so this does not become a race against fixedseeds (which triggers after 1 min)
2275
0
            if (NodeClock::now() > start + SEEDNODE_TIMEOUT) {
2276
0
                LogInfo("Couldn't connect to enough peers via seed nodes. Handing fetch logic to the DNS seeds.\n");
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2277
0
                break;
2278
0
            }
2279
2280
0
            outbound_connection_count = GetFullOutboundConnCount();
2281
0
            if (outbound_connection_count >= SEED_OUTBOUND_CONNECTION_THRESHOLD) {
2282
0
                LogInfo("P2P peers available. Finished fetching data from seed nodes.\n");
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2283
0
                break;
2284
0
            }
2285
0
        }
2286
0
    }
2287
2288
0
    FastRandomContext rng;
2289
0
    std::vector<std::string> seeds = m_params.DNSSeeds();
2290
0
    std::shuffle(seeds.begin(), seeds.end(), rng);
2291
0
    int seeds_right_now = 0; // Number of seeds left before testing if we have enough connections
2292
2293
0
    if (gArgs.GetBoolArg("-forcednsseed", DEFAULT_FORCEDNSSEED)) {
2294
        // When -forcednsseed is provided, query all.
2295
0
        seeds_right_now = seeds.size();
2296
0
    } else if (addrman.get().Size() == 0) {
2297
        // If we have no known peers, query all.
2298
        // This will occur on the first run, or if peers.dat has been
2299
        // deleted.
2300
0
        seeds_right_now = seeds.size();
2301
0
    }
2302
2303
    // Proceed with dnsseeds if seednodes hasn't reached the target or if forcednsseed is set
2304
0
    if (outbound_connection_count < SEED_OUTBOUND_CONNECTION_THRESHOLD || seeds_right_now) {
2305
        // goal: only query DNS seed if address need is acute
2306
        // * If we have a reasonable number of peers in addrman, spend
2307
        //   some time trying them first. This improves user privacy by
2308
        //   creating fewer identifying DNS requests, reduces trust by
2309
        //   giving seeds less influence on the network topology, and
2310
        //   reduces traffic to the seeds.
2311
        // * When querying DNS seeds query a few at once, this ensures
2312
        //   that we don't give DNS seeds the ability to eclipse nodes
2313
        //   that query them.
2314
        // * If we continue having problems, eventually query all the
2315
        //   DNS seeds, and if that fails too, also try the fixed seeds.
2316
        //   (done in ThreadOpenConnections)
2317
0
        int found = 0;
2318
0
        const std::chrono::seconds seeds_wait_time = (addrman.get().Size() >= DNSSEEDS_DELAY_PEER_THRESHOLD ? DNSSEEDS_DELAY_MANY_PEERS : DNSSEEDS_DELAY_FEW_PEERS);
2319
2320
0
        for (const std::string& seed : seeds) {
2321
0
            if (seeds_right_now == 0) {
2322
0
                seeds_right_now += DNSSEEDS_TO_QUERY_AT_ONCE;
2323
2324
0
                if (addrman.get().Size() > 0) {
2325
0
                    LogInfo("Waiting %d seconds before querying DNS seeds.\n", seeds_wait_time.count());
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2326
0
                    std::chrono::seconds to_wait = seeds_wait_time;
2327
0
                    while (to_wait.count() > 0) {
2328
                        // if sleeping for the MANY_PEERS interval, wake up
2329
                        // early to see if we have enough peers and can stop
2330
                        // this thread entirely freeing up its resources
2331
0
                        std::chrono::seconds w = std::min(DNSSEEDS_DELAY_FEW_PEERS, to_wait);
2332
0
                        if (!m_interrupt_net->sleep_for(w)) return;
2333
0
                        to_wait -= w;
2334
2335
0
                        if (GetFullOutboundConnCount() >= SEED_OUTBOUND_CONNECTION_THRESHOLD) {
2336
0
                            if (found > 0) {
2337
0
                                LogInfo("%d addresses found from DNS seeds\n", found);
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2338
0
                                LogInfo("P2P peers available. Finished DNS seeding.\n");
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2339
0
                            } else {
2340
0
                                LogInfo("P2P peers available. Skipped DNS seeding.\n");
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2341
0
                            }
2342
0
                            return;
2343
0
                        }
2344
0
                    }
2345
0
                }
2346
0
            }
2347
2348
0
            if (m_interrupt_net->interrupted()) return;
2349
2350
            // hold off on querying seeds if P2P network deactivated
2351
0
            if (!fNetworkActive) {
2352
0
                LogInfo("Waiting for network to be reactivated before querying DNS seeds.\n");
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2353
0
                do {
2354
0
                    if (!m_interrupt_net->sleep_for(1s)) return;
2355
0
                } while (!fNetworkActive);
2356
0
            }
2357
2358
0
            LogInfo("Loading addresses from DNS seed %s\n", seed);
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2359
            // If -proxy is in use, we make an ADDR_FETCH connection to the DNS resolved peer address
2360
            // for the base dns seed domain in chainparams
2361
0
            if (HaveNameProxy()) {
2362
0
                AddAddrFetch(seed);
2363
0
            } else {
2364
0
                std::vector<CAddress> vAdd;
2365
0
                constexpr ServiceFlags requiredServiceBits{SeedsServiceFlags()};
2366
0
                std::string host = strprintf("x%x.%s", requiredServiceBits, seed);
Line
Count
Source
1172
0
#define strprintf tfm::format
2367
0
                CNetAddr resolveSource;
2368
0
                if (!resolveSource.SetInternal(host)) {
2369
0
                    continue;
2370
0
                }
2371
                // Limit number of IPs learned from a single DNS seed. This limit exists to prevent the results from
2372
                // one DNS seed from dominating AddrMan. Note that the number of results from a UDP DNS query is
2373
                // bounded to 33 already, but it is possible for it to use TCP where a larger number of results can be
2374
                // returned.
2375
0
                unsigned int nMaxIPs = 32;
2376
0
                const auto addresses{LookupHost(host, nMaxIPs, true)};
2377
0
                if (!addresses.empty()) {
2378
0
                    for (const CNetAddr& ip : addresses) {
2379
0
                        CAddress addr = CAddress(CService(ip, m_params.GetDefaultPort()), requiredServiceBits);
2380
0
                        addr.nTime = rng.rand_uniform_delay(Now<NodeSeconds>() - 3 * 24h, -4 * 24h); // use a random age between 3 and 7 days old
2381
0
                        vAdd.push_back(addr);
2382
0
                        found++;
2383
0
                    }
2384
0
                    addrman.get().Add(vAdd, resolveSource);
2385
0
                } else {
2386
                    // If the seed does not support a subdomain with our desired service bits,
2387
                    // we make an ADDR_FETCH connection to the DNS resolved peer address for the
2388
                    // base dns seed domain in chainparams
2389
0
                    AddAddrFetch(seed);
2390
0
                }
2391
0
            }
2392
0
            --seeds_right_now;
2393
0
        }
2394
0
        LogInfo("%d addresses found from DNS seeds\n", found);
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2395
0
    } else {
2396
0
        LogInfo("Skipping DNS seeds. Enough peers have been found\n");
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2397
0
    }
2398
0
}
2399
2400
void CConnman::DumpAddresses()
2401
0
{
2402
0
    const auto start{SteadyClock::now()};
2403
2404
0
    DumpPeerAddresses(::gArgs, addrman);
2405
2406
0
    LogDebug(BCLog::NET, "Flushed %d addresses to peers.dat %dms",
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2407
0
             addrman.get().Size(), Ticks<std::chrono::milliseconds>(SteadyClock::now() - start));
2408
0
}
2409
2410
void CConnman::ProcessAddrFetch()
2411
0
{
2412
0
    AssertLockNotHeld(m_unused_i2p_sessions_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
2413
0
    std::string strDest;
2414
0
    {
2415
0
        LOCK(m_addr_fetches_mutex);
Line
Count
Source
268
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
2416
0
        if (m_addr_fetches.empty())
2417
0
            return;
2418
0
        strDest = m_addr_fetches.front();
2419
0
        m_addr_fetches.pop_front();
2420
0
    }
2421
    // Attempt v2 connection if we support v2 - we'll reconnect with v1 if our
2422
    // peer doesn't support it or immediately disconnects us for another reason.
2423
0
    const bool use_v2transport(GetLocalServices() & NODE_P2P_V2);
2424
0
    CAddress addr;
2425
0
    CountingSemaphoreGrant<> grant(*semOutbound, /*fTry=*/true);
2426
0
    if (grant) {
2427
0
        OpenNetworkConnection(addr, false, std::move(grant), strDest.c_str(), ConnectionType::ADDR_FETCH, use_v2transport);
2428
0
    }
2429
0
}
2430
2431
bool CConnman::GetTryNewOutboundPeer() const
2432
0
{
2433
0
    return m_try_another_outbound_peer;
2434
0
}
2435
2436
void CConnman::SetTryNewOutboundPeer(bool flag)
2437
0
{
2438
0
    m_try_another_outbound_peer = flag;
2439
0
    LogDebug(BCLog::NET, "setting try another outbound peer=%s\n", flag ? "true" : "false");
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2440
0
}
2441
2442
void CConnman::StartExtraBlockRelayPeers()
2443
0
{
2444
0
    LogDebug(BCLog::NET, "enabling extra block-relay-only peers\n");
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2445
0
    m_start_extra_block_relay_peers = true;
2446
0
}
2447
2448
// Return the number of outbound connections that are full relay (not blocks only)
2449
int CConnman::GetFullOutboundConnCount() const
2450
0
{
2451
0
    int nRelevant = 0;
2452
0
    {
2453
0
        LOCK(m_nodes_mutex);
Line
Count
Source
268
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
2454
0
        for (const CNode* pnode : m_nodes) {
2455
0
            if (pnode->fSuccessfullyConnected && pnode->IsFullOutboundConn()) ++nRelevant;
2456
0
        }
2457
0
    }
2458
0
    return nRelevant;
2459
0
}
2460
2461
// Return the number of peers we have over our outbound connection limit
2462
// Exclude peers that are marked for disconnect, or are going to be
2463
// disconnected soon (eg ADDR_FETCH and FEELER)
2464
// Also exclude peers that haven't finished initial connection handshake yet
2465
// (so that we don't decide we're over our desired connection limit, and then
2466
// evict some peer that has finished the handshake)
2467
int CConnman::GetExtraFullOutboundCount() const
2468
0
{
2469
0
    int full_outbound_peers = 0;
2470
0
    {
2471
0
        LOCK(m_nodes_mutex);
Line
Count
Source
268
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
2472
0
        for (const CNode* pnode : m_nodes) {
2473
0
            if (pnode->fSuccessfullyConnected && !pnode->fDisconnect && pnode->IsFullOutboundConn()) {
2474
0
                ++full_outbound_peers;
2475
0
            }
2476
0
        }
2477
0
    }
2478
0
    return std::max(full_outbound_peers - m_max_outbound_full_relay, 0);
2479
0
}
2480
2481
int CConnman::GetExtraBlockRelayCount() const
2482
0
{
2483
0
    int block_relay_peers = 0;
2484
0
    {
2485
0
        LOCK(m_nodes_mutex);
Line
Count
Source
268
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
2486
0
        for (const CNode* pnode : m_nodes) {
2487
0
            if (pnode->fSuccessfullyConnected && !pnode->fDisconnect && pnode->IsBlockOnlyConn()) {
2488
0
                ++block_relay_peers;
2489
0
            }
2490
0
        }
2491
0
    }
2492
0
    return std::max(block_relay_peers - m_max_outbound_block_relay, 0);
2493
0
}
2494
2495
std::unordered_set<Network> CConnman::GetReachableEmptyNetworks() const
2496
0
{
2497
0
    std::unordered_set<Network> networks{};
2498
0
    for (int n = 0; n < NET_MAX; n++) {
2499
0
        enum Network net = (enum Network)n;
2500
0
        if (net == NET_UNROUTABLE || net == NET_INTERNAL) continue;
2501
0
        if (g_reachable_nets.Contains(net) && addrman.get().Size(net, std::nullopt) == 0) {
2502
0
            networks.insert(net);
2503
0
        }
2504
0
    }
2505
0
    return networks;
2506
0
}
2507
2508
bool CConnman::MultipleManualOrFullOutboundConns(Network net) const
2509
0
{
2510
0
    AssertLockHeld(m_nodes_mutex);
Line
Count
Source
144
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
2511
0
    return m_network_conn_counts[net] > 1;
2512
0
}
2513
2514
bool CConnman::MaybePickPreferredNetwork(std::optional<Network>& network)
2515
0
{
2516
0
    std::array<Network, 5> nets{NET_IPV4, NET_IPV6, NET_ONION, NET_I2P, NET_CJDNS};
2517
0
    std::shuffle(nets.begin(), nets.end(), FastRandomContext());
2518
2519
0
    LOCK(m_nodes_mutex);
Line
Count
Source
268
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
2520
0
    for (const auto net : nets) {
2521
0
        if (g_reachable_nets.Contains(net) && m_network_conn_counts[net] == 0 && addrman.get().Size(net) != 0) {
2522
0
            network = net;
2523
0
            return true;
2524
0
        }
2525
0
    }
2526
2527
0
    return false;
2528
0
}
2529
2530
void CConnman::ThreadOpenConnections(const std::vector<std::string> connect, std::span<const std::string> seed_nodes)
2531
0
{
2532
0
    AssertLockNotHeld(m_unused_i2p_sessions_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
2533
0
    AssertLockNotHeld(m_reconnections_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
2534
0
    FastRandomContext rng;
2535
    // Connect to specific addresses
2536
0
    if (!connect.empty())
2537
0
    {
2538
        // Attempt v2 connection if we support v2 - we'll reconnect with v1 if our
2539
        // peer doesn't support it or immediately disconnects us for another reason.
2540
0
        const bool use_v2transport(GetLocalServices() & NODE_P2P_V2);
2541
0
        for (int64_t nLoop = 0;; nLoop++)
2542
0
        {
2543
0
            for (const std::string& strAddr : connect)
2544
0
            {
2545
0
                CAddress addr(CService(), NODE_NONE);
2546
0
                OpenNetworkConnection(addr, false, {}, strAddr.c_str(), ConnectionType::MANUAL, /*use_v2transport=*/use_v2transport);
2547
0
                for (int i = 0; i < 10 && i < nLoop; i++)
2548
0
                {
2549
0
                    if (!m_interrupt_net->sleep_for(500ms)) {
2550
0
                        return;
2551
0
                    }
2552
0
                }
2553
0
            }
2554
0
            if (!m_interrupt_net->sleep_for(500ms)) {
2555
0
                return;
2556
0
            }
2557
0
            PerformReconnections();
2558
0
        }
2559
0
    }
2560
2561
    // Initiate network connections
2562
0
    auto start = GetTime<std::chrono::microseconds>();
2563
2564
    // Minimum time before next feeler connection (in microseconds).
2565
0
    auto next_feeler = start + rng.rand_exp_duration(FEELER_INTERVAL);
2566
0
    auto next_extra_block_relay = start + rng.rand_exp_duration(EXTRA_BLOCK_RELAY_ONLY_PEER_INTERVAL);
2567
0
    auto next_extra_network_peer{start + rng.rand_exp_duration(EXTRA_NETWORK_PEER_INTERVAL)};
2568
0
    const bool dnsseed = gArgs.GetBoolArg("-dnsseed", DEFAULT_DNSSEED);
2569
0
    bool add_fixed_seeds = gArgs.GetBoolArg("-fixedseeds", DEFAULT_FIXEDSEEDS);
2570
0
    const bool use_seednodes{!gArgs.GetArgs("-seednode").empty()};
2571
2572
0
    auto seed_node_timer = NodeClock::now();
2573
0
    bool add_addr_fetch{addrman.get().Size() == 0 && !seed_nodes.empty()};
2574
0
    constexpr std::chrono::seconds ADD_NEXT_SEEDNODE = 10s;
2575
2576
0
    if (!add_fixed_seeds) {
2577
0
        LogInfo("Fixed seeds are disabled\n");
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2578
0
    }
2579
2580
0
    while (!m_interrupt_net->interrupted()) {
2581
0
        if (add_addr_fetch) {
2582
0
            add_addr_fetch = false;
2583
0
            const auto& seed{SpanPopBack(seed_nodes)};
2584
0
            AddAddrFetch(seed);
2585
2586
0
            if (addrman.get().Size() == 0) {
2587
0
                LogInfo("Empty addrman, adding seednode (%s) to addrfetch\n", seed);
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2588
0
            } else {
2589
0
                LogInfo("Couldn't connect to peers from addrman after %d seconds. Adding seednode (%s) to addrfetch\n", ADD_NEXT_SEEDNODE.count(), seed);
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2590
0
            }
2591
0
        }
2592
2593
0
        ProcessAddrFetch();
2594
2595
0
        if (!m_interrupt_net->sleep_for(500ms)) {
2596
0
            return;
2597
0
        }
2598
2599
0
        PerformReconnections();
2600
2601
0
        CountingSemaphoreGrant<> grant(*semOutbound);
2602
0
        if (m_interrupt_net->interrupted()) {
2603
0
            return;
2604
0
        }
2605
2606
0
        const std::unordered_set<Network> fixed_seed_networks{GetReachableEmptyNetworks()};
2607
0
        if (add_fixed_seeds && !fixed_seed_networks.empty()) {
2608
            // When the node starts with an empty peers.dat, there are a few other sources of peers before
2609
            // we fallback on to fixed seeds: -dnsseed, -seednode, -addnode
2610
            // If none of those are available, we fallback on to fixed seeds immediately, else we allow
2611
            // 60 seconds for any of those sources to populate addrman.
2612
0
            bool add_fixed_seeds_now = false;
2613
            // It is cheapest to check if enough time has passed first.
2614
0
            if (GetTime<std::chrono::seconds>() > start + std::chrono::minutes{1}) {
2615
0
                add_fixed_seeds_now = true;
2616
0
                LogInfo("Adding fixed seeds as 60 seconds have passed and addrman is empty for at least one reachable network\n");
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2617
0
            }
2618
2619
            // Perform cheap checks before locking a mutex.
2620
0
            else if (!dnsseed && !use_seednodes) {
2621
0
                LOCK(m_added_nodes_mutex);
Line
Count
Source
268
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
2622
0
                if (m_added_node_params.empty()) {
2623
0
                    add_fixed_seeds_now = true;
2624
0
                    LogInfo("Adding fixed seeds as -dnsseed=0 (or IPv4/IPv6 connections are disabled via -onlynet) and neither -addnode nor -seednode are provided\n");
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2625
0
                }
2626
0
            }
2627
2628
0
            if (add_fixed_seeds_now) {
2629
0
                std::vector<CAddress> seed_addrs{ConvertSeeds(m_params.FixedSeeds())};
2630
                // We will not make outgoing connections to peers that are unreachable
2631
                // (e.g. because of -onlynet configuration).
2632
                // Therefore, we do not add them to addrman in the first place.
2633
                // In case previously unreachable networks become reachable
2634
                // (e.g. in case of -onlynet changes by the user), fixed seeds will
2635
                // be loaded only for networks for which we have no addresses.
2636
0
                seed_addrs.erase(std::remove_if(seed_addrs.begin(), seed_addrs.end(),
2637
0
                                                [&fixed_seed_networks](const CAddress& addr) { return !fixed_seed_networks.contains(addr.GetNetwork()); }),
2638
0
                                 seed_addrs.end());
2639
0
                CNetAddr local;
2640
0
                local.SetInternal("fixedseeds");
2641
0
                addrman.get().Add(seed_addrs, local);
2642
0
                add_fixed_seeds = false;
2643
0
                LogInfo("Added %d fixed seeds from reachable networks.\n", seed_addrs.size());
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
2644
0
            }
2645
0
        }
2646
2647
        //
2648
        // Choose an address to connect to based on most recently seen
2649
        //
2650
0
        CAddress addrConnect;
2651
2652
        // Only connect out to one peer per ipv4/ipv6 network group (/16 for IPv4).
2653
0
        int nOutboundFullRelay = 0;
2654
0
        int nOutboundBlockRelay = 0;
2655
0
        int outbound_privacy_network_peers = 0;
2656
0
        std::set<std::vector<unsigned char>> outbound_ipv46_peer_netgroups;
2657
2658
0
        {
2659
0
            LOCK(m_nodes_mutex);
Line
Count
Source
268
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
2660
0
            for (const CNode* pnode : m_nodes) {
2661
0
                if (pnode->IsFullOutboundConn()) nOutboundFullRelay++;
2662
0
                if (pnode->IsBlockOnlyConn()) nOutboundBlockRelay++;
2663
2664
                // Make sure our persistent outbound slots to ipv4/ipv6 peers belong to different netgroups.
2665
0
                switch (pnode->m_conn_type) {
2666
                    // We currently don't take inbound connections into account. Since they are
2667
                    // free to make, an attacker could make them to prevent us from connecting to
2668
                    // certain peers.
2669
0
                    case ConnectionType::INBOUND:
2670
                    // Short-lived outbound connections should not affect how we select outbound
2671
                    // peers from addrman.
2672
0
                    case ConnectionType::ADDR_FETCH:
2673
0
                    case ConnectionType::FEELER:
2674
0
                    case ConnectionType::PRIVATE_BROADCAST:
2675
0
                        break;
2676
0
                    case ConnectionType::MANUAL:
2677
0
                    case ConnectionType::OUTBOUND_FULL_RELAY:
2678
0
                    case ConnectionType::BLOCK_RELAY:
2679
0
                        const CAddress address{pnode->addr};
2680
0
                        if (address.IsTor() || address.IsI2P() || address.IsCJDNS()) {
2681
                            // Since our addrman-groups for these networks are
2682
                            // random, without relation to the route we
2683
                            // take to connect to these peers or to the
2684
                            // difficulty in obtaining addresses with diverse
2685
                            // groups, we don't worry about diversity with
2686
                            // respect to our addrman groups when connecting to
2687
                            // these networks.
2688
0
                            ++outbound_privacy_network_peers;
2689
0
                        } else {
2690
0
                            outbound_ipv46_peer_netgroups.insert(m_netgroupman.GetGroup(address));
2691
0
                        }
2692
0
                } // no default case, so the compiler can warn about missing cases
2693
0
            }
2694
0
        }
2695
2696
0
        if (!seed_nodes.empty() && nOutboundFullRelay < SEED_OUTBOUND_CONNECTION_THRESHOLD) {
2697
0
            if (NodeClock::now() > seed_node_timer + ADD_NEXT_SEEDNODE) {
2698
0
                seed_node_timer = NodeClock::now();
2699
0
                add_addr_fetch = true;
2700
0
            }
2701
0
        }
2702
2703
0
        ConnectionType conn_type = ConnectionType::OUTBOUND_FULL_RELAY;
2704
0
        auto now = GetTime<std::chrono::microseconds>();
2705
0
        bool anchor = false;
2706
0
        bool fFeeler = false;
2707
0
        std::optional<Network> preferred_net;
2708
2709
        // Determine what type of connection to open. Opening
2710
        // BLOCK_RELAY connections to addresses from anchors.dat gets the highest
2711
        // priority. Then we open OUTBOUND_FULL_RELAY priority until we
2712
        // meet our full-relay capacity. Then we open BLOCK_RELAY connection
2713
        // until we hit our block-relay-only peer limit.
2714
        // GetTryNewOutboundPeer() gets set when a stale tip is detected, so we
2715
        // try opening an additional OUTBOUND_FULL_RELAY connection. If none of
2716
        // these conditions are met, check to see if it's time to try an extra
2717
        // block-relay-only peer (to confirm our tip is current, see below) or the next_feeler
2718
        // timer to decide if we should open a FEELER.
2719
2720
0
        if (!m_anchors.empty() && (nOutboundBlockRelay < m_max_outbound_block_relay)) {
2721
0
            conn_type = ConnectionType::BLOCK_RELAY;
2722
0
            anchor = true;
2723
0
        } else if (nOutboundFullRelay < m_max_outbound_full_relay) {
2724
            // OUTBOUND_FULL_RELAY
2725
0
        } else if (nOutboundBlockRelay < m_max_outbound_block_relay) {
2726
0
            conn_type = ConnectionType::BLOCK_RELAY;
2727
0
        } else if (GetTryNewOutboundPeer()) {
2728
            // OUTBOUND_FULL_RELAY
2729
0
        } else if (now > next_extra_block_relay && m_start_extra_block_relay_peers) {
2730
            // Periodically connect to a peer (using regular outbound selection
2731
            // methodology from addrman) and stay connected long enough to sync
2732
            // headers, but not much else.
2733
            //
2734
            // Then disconnect the peer, if we haven't learned anything new.
2735
            //
2736
            // The idea is to make eclipse attacks very difficult to pull off,
2737
            // because every few minutes we're finding a new peer to learn headers
2738
            // from.
2739
            //
2740
            // This is similar to the logic for trying extra outbound (full-relay)
2741
            // peers, except:
2742
            // - we do this all the time on an exponential timer, rather than just when
2743
            //   our tip is stale
2744
            // - we potentially disconnect our next-youngest block-relay-only peer, if our
2745
            //   newest block-relay-only peer delivers a block more recently.
2746
            //   See the eviction logic in net_processing.cpp.
2747
            //
2748
            // Because we can promote these connections to block-relay-only
2749
            // connections, they do not get their own ConnectionType enum
2750
            // (similar to how we deal with extra outbound peers).
2751
0
            next_extra_block_relay = now + rng.rand_exp_duration(EXTRA_BLOCK_RELAY_ONLY_PEER_INTERVAL);
2752
0
            conn_type = ConnectionType::BLOCK_RELAY;
2753
0
        } else if (now > next_feeler) {
2754
0
            next_feeler = now + rng.rand_exp_duration(FEELER_INTERVAL);
2755
0
            conn_type = ConnectionType::FEELER;
2756
0
            fFeeler = true;
2757
0
        } else if (nOutboundFullRelay == m_max_outbound_full_relay &&
2758
0
                   m_max_outbound_full_relay == MAX_OUTBOUND_FULL_RELAY_CONNECTIONS &&
2759
0
                   now > next_extra_network_peer &&
2760
0
                   MaybePickPreferredNetwork(preferred_net)) {
2761
            // Full outbound connection management: Attempt to get at least one
2762
            // outbound peer from each reachable network by making extra connections
2763
            // and then protecting "only" peers from a network during outbound eviction.
2764
            // This is not attempted if the user changed -maxconnections to a value
2765
            // so low that less than MAX_OUTBOUND_FULL_RELAY_CONNECTIONS are made,
2766
            // to prevent interactions with otherwise protected outbound peers.
2767
0
            next_extra_network_peer = now + rng.rand_exp_duration(EXTRA_NETWORK_PEER_INTERVAL);
2768
0
        } else {
2769
            // skip to next iteration of while loop
2770
0
            continue;
2771
0
        }
2772
2773
0
        addrman.get().ResolveCollisions();
2774
2775
0
        const auto current_time{NodeClock::now()};
2776
0
        int nTries = 0;
2777
0
        const auto reachable_nets{g_reachable_nets.All()};
2778
2779
0
        while (!m_interrupt_net->interrupted()) {
2780
0
            if (anchor && !m_anchors.empty()) {
2781
0
                const CAddress addr = m_anchors.back();
2782
0
                m_anchors.pop_back();
2783
0
                if (!addr.IsValid() || IsLocal(addr) || !g_reachable_nets.Contains(addr) ||
2784
0
                    !m_msgproc->HasAllDesirableServiceFlags(addr.nServices) ||
2785
0
                    outbound_ipv46_peer_netgroups.contains(m_netgroupman.GetGroup(addr))) continue;
2786
0
                addrConnect = addr;
2787
0
                LogDebug(BCLog::NET, "Trying to make an anchor connection to %s\n", addrConnect.ToStringAddrPort());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2788
0
                break;
2789
0
            }
2790
2791
            // If we didn't find an appropriate destination after trying 100 addresses fetched from addrman,
2792
            // stop this loop, and let the outer loop run again (which sleeps, adds seed nodes, recalculates
2793
            // already-connected network ranges, ...) before trying new addrman addresses.
2794
0
            nTries++;
2795
0
            if (nTries > 100)
2796
0
                break;
2797
2798
0
            CAddress addr;
2799
0
            NodeSeconds addr_last_try{0s};
2800
2801
0
            if (fFeeler) {
2802
                // First, try to get a tried table collision address. This returns
2803
                // an empty (invalid) address if there are no collisions to try.
2804
0
                std::tie(addr, addr_last_try) = addrman.get().SelectTriedCollision();
2805
2806
0
                if (!addr.IsValid()) {
2807
                    // No tried table collisions. Select a new table address
2808
                    // for our feeler.
2809
0
                    std::tie(addr, addr_last_try) = addrman.get().Select(true, reachable_nets);
2810
0
                } else if (AlreadyConnectedToAddress(addr)) {
2811
                    // If test-before-evict logic would have us connect to a
2812
                    // peer that we're already connected to, just mark that
2813
                    // address as Good(). We won't be able to initiate the
2814
                    // connection anyway, so this avoids inadvertently evicting
2815
                    // a currently-connected peer.
2816
0
                    addrman.get().Good(addr);
2817
                    // Select a new table address for our feeler instead.
2818
0
                    std::tie(addr, addr_last_try) = addrman.get().Select(true, reachable_nets);
2819
0
                }
2820
0
            } else {
2821
                // Not a feeler
2822
                // If preferred_net has a value set, pick an extra outbound
2823
                // peer from that network. The eviction logic in net_processing
2824
                // ensures that a peer from another network will be evicted.
2825
0
                std::tie(addr, addr_last_try) = preferred_net.has_value()
2826
0
                    ? addrman.get().Select(false, {*preferred_net})
2827
0
                    : addrman.get().Select(false, reachable_nets);
2828
0
            }
2829
2830
            // Require outbound IPv4/IPv6 connections, other than feelers, to be to distinct network groups
2831
0
            if (!fFeeler && outbound_ipv46_peer_netgroups.contains(m_netgroupman.GetGroup(addr))) {
2832
0
                continue;
2833
0
            }
2834
2835
            // if we selected an invalid or local address, restart
2836
0
            if (!addr.IsValid() || IsLocal(addr)) {
2837
0
                break;
2838
0
            }
2839
2840
0
            if (!g_reachable_nets.Contains(addr)) {
2841
0
                continue;
2842
0
            }
2843
2844
            // only consider very recently tried nodes after 30 failed attempts
2845
0
            if (current_time - addr_last_try < 10min && nTries < 30) {
2846
0
                continue;
2847
0
            }
2848
2849
            // for non-feelers, require all the services we'll want,
2850
            // for feelers, only require they be a full node (only because most
2851
            // SPV clients don't have a good address DB available)
2852
0
            if (!fFeeler && !m_msgproc->HasAllDesirableServiceFlags(addr.nServices)) {
2853
0
                continue;
2854
0
            } else if (fFeeler && !MayHaveUsefulAddressDB(addr.nServices)) {
2855
0
                continue;
2856
0
            }
2857
2858
            // Do not connect to bad ports, unless 50 invalid addresses have been selected already.
2859
0
            if (nTries < 50 && (addr.IsIPv4() || addr.IsIPv6()) && IsBadPort(addr.GetPort())) {
2860
0
                continue;
2861
0
            }
2862
2863
            // Do not make automatic outbound connections to addnode peers, to
2864
            // not use our limited outbound slots for them and to ensure
2865
            // addnode connections benefit from their intended protections.
2866
0
            if (AddedNodesContain(addr)) {
2867
0
                LogDebug(BCLog::NET, "Not making automatic %s%s connection to %s peer selected for manual (addnode) connection%s\n",
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2868
0
                              preferred_net.has_value() ? "network-specific " : "",
2869
0
                              ConnectionTypeAsString(conn_type), GetNetworkName(addr.GetNetwork()),
2870
0
                              fLogIPs ? strprintf(": %s", addr.ToStringAddrPort()) : "");
2871
0
                continue;
2872
0
            }
2873
2874
0
            addrConnect = addr;
2875
0
            break;
2876
0
        }
2877
2878
0
        if (addrConnect.IsValid()) {
2879
0
            if (fFeeler) {
2880
                // Add small amount of random noise before connection to avoid synchronization.
2881
0
                if (!m_interrupt_net->sleep_for(rng.rand_uniform_duration<CThreadInterrupt::Clock>(FEELER_SLEEP_WINDOW))) {
2882
0
                    return;
2883
0
                }
2884
0
                LogDebug(BCLog::NET, "Making feeler connection to %s\n", addrConnect.ToStringAddrPort());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2885
0
            }
2886
2887
0
            if (preferred_net != std::nullopt) LogDebug(BCLog::NET, "Making network specific connection to %s on %s.\n", addrConnect.ToStringAddrPort(), GetNetworkName(preferred_net.value()));
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
2888
2889
            // Record addrman failure attempts when node has at least 2 persistent outbound connections to peers with
2890
            // different netgroups in ipv4/ipv6 networks + all peers in Tor/I2P/CJDNS networks.
2891
            // Don't record addrman failure attempts when node is offline. This can be identified since all local
2892
            // network connections (if any) belong in the same netgroup, and the size of `outbound_ipv46_peer_netgroups` would only be 1.
2893
0
            const bool count_failures{((int)outbound_ipv46_peer_netgroups.size() + outbound_privacy_network_peers) >= std::min(m_max_automatic_connections - 1, 2)};
2894
            // Use BIP324 transport when both us and them have NODE_V2_P2P set.
2895
0
            const bool use_v2transport(addrConnect.nServices & GetLocalServices() & NODE_P2P_V2);
2896
0
            OpenNetworkConnection(addrConnect, count_failures, std::move(grant), /*pszDest=*/nullptr, conn_type, use_v2transport);
2897
0
        }
2898
0
    }
2899
0
}
2900
2901
std::vector<CAddress> CConnman::GetCurrentBlockRelayOnlyConns() const
2902
0
{
2903
0
    std::vector<CAddress> ret;
2904
0
    LOCK(m_nodes_mutex);
Line
Count
Source
268
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
2905
0
    for (const CNode* pnode : m_nodes) {
2906
0
        if (pnode->IsBlockOnlyConn()) {
2907
0
            ret.push_back(pnode->addr);
2908
0
        }
2909
0
    }
2910
2911
0
    return ret;
2912
0
}
2913
2914
std::vector<AddedNodeInfo> CConnman::GetAddedNodeInfo(bool include_connected) const
2915
0
{
2916
0
    std::vector<AddedNodeInfo> ret;
2917
2918
0
    std::list<AddedNodeParams> lAddresses(0);
2919
0
    {
2920
0
        LOCK(m_added_nodes_mutex);
Line
Count
Source
268
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
2921
0
        ret.reserve(m_added_node_params.size());
2922
0
        std::copy(m_added_node_params.cbegin(), m_added_node_params.cend(), std::back_inserter(lAddresses));
2923
0
    }
2924
2925
2926
    // Build a map of all already connected addresses (by IP:port and by name) to inbound/outbound and resolved CService
2927
0
    std::map<CService, bool> mapConnected;
2928
0
    std::map<std::string, std::pair<bool, CService>> mapConnectedByName;
2929
0
    {
2930
0
        LOCK(m_nodes_mutex);
Line
Count
Source
268
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
2931
0
        for (const CNode* pnode : m_nodes) {
2932
0
            if (pnode->addr.IsValid()) {
2933
0
                mapConnected[pnode->addr] = pnode->IsInboundConn();
2934
0
            }
2935
0
            std::string addrName{pnode->m_addr_name};
2936
0
            if (!addrName.empty()) {
2937
0
                mapConnectedByName[std::move(addrName)] = std::make_pair(pnode->IsInboundConn(), static_cast<const CService&>(pnode->addr));
2938
0
            }
2939
0
        }
2940
0
    }
2941
2942
0
    for (const auto& addr : lAddresses) {
2943
0
        CService service{MaybeFlipIPv6toCJDNS(LookupNumeric(addr.m_added_node, GetDefaultPort(addr.m_added_node)))};
2944
0
        AddedNodeInfo addedNode{addr, CService(), false, false};
2945
0
        if (service.IsValid()) {
2946
            // strAddNode is an IP:port
2947
0
            auto it = mapConnected.find(service);
2948
0
            if (it != mapConnected.end()) {
2949
0
                if (!include_connected) {
2950
0
                    continue;
2951
0
                }
2952
0
                addedNode.resolvedAddress = service;
2953
0
                addedNode.fConnected = true;
2954
0
                addedNode.fInbound = it->second;
2955
0
            }
2956
0
        } else {
2957
            // strAddNode is a name
2958
0
            auto it = mapConnectedByName.find(addr.m_added_node);
2959
0
            if (it != mapConnectedByName.end()) {
2960
0
                if (!include_connected) {
2961
0
                    continue;
2962
0
                }
2963
0
                addedNode.resolvedAddress = it->second.second;
2964
0
                addedNode.fConnected = true;
2965
0
                addedNode.fInbound = it->second.first;
2966
0
            }
2967
0
        }
2968
0
        ret.emplace_back(std::move(addedNode));
2969
0
    }
2970
2971
0
    return ret;
2972
0
}
2973
2974
void CConnman::ThreadOpenAddedConnections()
2975
0
{
2976
0
    AssertLockNotHeld(m_unused_i2p_sessions_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
2977
0
    AssertLockNotHeld(m_reconnections_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
2978
0
    while (true)
2979
0
    {
2980
0
        CountingSemaphoreGrant<> grant(*semAddnode);
2981
0
        std::vector<AddedNodeInfo> vInfo = GetAddedNodeInfo(/*include_connected=*/false);
2982
0
        bool tried = false;
2983
0
        for (const AddedNodeInfo& info : vInfo) {
2984
0
            if (!grant) {
2985
                // If we've used up our semaphore and need a new one, let's not wait here since while we are waiting
2986
                // the addednodeinfo state might change.
2987
0
                break;
2988
0
            }
2989
0
            tried = true;
2990
0
            CAddress addr(CService(), NODE_NONE);
2991
0
            OpenNetworkConnection(addr, false, std::move(grant), info.m_params.m_added_node.c_str(), ConnectionType::MANUAL, info.m_params.m_use_v2transport);
2992
0
            if (!m_interrupt_net->sleep_for(500ms)) return;
2993
0
            grant = CountingSemaphoreGrant<>(*semAddnode, /*fTry=*/true);
2994
0
        }
2995
        // See if any reconnections are desired.
2996
0
        PerformReconnections();
2997
        // Retry every 60 seconds if a connection was attempted, otherwise two seconds
2998
0
        if (!m_interrupt_net->sleep_for(tried ? 60s : 2s)) {
2999
0
            return;
3000
0
        }
3001
0
    }
3002
0
}
3003
3004
// if successful, this moves the passed grant to the constructed node
3005
bool CConnman::OpenNetworkConnection(const CAddress& addrConnect,
3006
                                     bool fCountFailure,
3007
                                     CountingSemaphoreGrant<>&& grant_outbound,
3008
                                     const char* pszDest,
3009
                                     ConnectionType conn_type,
3010
                                     bool use_v2transport,
3011
                                     const std::optional<Proxy>& proxy_override)
3012
0
{
3013
0
    AssertLockNotHeld(m_unused_i2p_sessions_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3014
0
    assert(conn_type != ConnectionType::INBOUND);
3015
3016
    //
3017
    // Initiate outbound network connection
3018
    //
3019
0
    if (m_interrupt_net->interrupted()) {
3020
0
        return false;
3021
0
    }
3022
0
    if (!fNetworkActive) {
3023
0
        return false;
3024
0
    }
3025
0
    if (!pszDest) {
3026
0
        bool banned_or_discouraged = m_banman && (m_banman->IsDiscouraged(addrConnect) || m_banman->IsBanned(addrConnect));
3027
0
        if (IsLocal(addrConnect) || banned_or_discouraged || AlreadyConnectedToAddress(addrConnect)) {
3028
0
            return false;
3029
0
        }
3030
0
    } else if (AlreadyConnectedToHost(pszDest)) {
3031
0
        return false;
3032
0
    }
3033
3034
0
    CNode* pnode = ConnectNode(addrConnect, pszDest, fCountFailure, conn_type, use_v2transport, proxy_override);
3035
3036
0
    if (!pnode)
3037
0
        return false;
3038
0
    pnode->grantOutbound = std::move(grant_outbound);
3039
3040
0
    m_msgproc->InitializeNode(*pnode, m_local_services);
3041
0
    {
3042
0
        LOCK(m_nodes_mutex);
Line
Count
Source
268
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
3043
0
        m_nodes.push_back(pnode);
3044
3045
        // update connection count by network
3046
0
        if (pnode->IsManualOrFullOutboundConn()) ++m_network_conn_counts[pnode->addr.GetNetwork()];
3047
0
    }
3048
3049
0
    TRACEPOINT(net, outbound_connection,
3050
0
        pnode->GetId(),
3051
0
        pnode->m_addr_name.c_str(),
3052
0
        pnode->ConnectionTypeAsString().c_str(),
3053
0
        pnode->ConnectedThroughNetwork(),
3054
0
        GetNodeCount(ConnectionDirection::Out));
3055
3056
0
    return true;
3057
0
}
3058
3059
std::optional<Network> CConnman::PrivateBroadcast::PickNetwork(std::optional<Proxy>& proxy) const
3060
0
{
3061
0
    prevector<4, Network> nets;
3062
0
    std::optional<Proxy> clearnet_proxy;
3063
0
    proxy.reset();
3064
0
    if (g_reachable_nets.Contains(NET_ONION)) {
3065
0
        nets.push_back(NET_ONION);
3066
3067
0
        clearnet_proxy = ProxyForIPv4or6();
3068
0
        if (clearnet_proxy.has_value()) {
3069
0
            if (g_reachable_nets.Contains(NET_IPV4)) {
3070
0
                nets.push_back(NET_IPV4);
3071
0
            }
3072
0
            if (g_reachable_nets.Contains(NET_IPV6)) {
3073
0
                nets.push_back(NET_IPV6);
3074
0
            }
3075
0
        }
3076
0
    }
3077
0
    if (g_reachable_nets.Contains(NET_I2P)) {
3078
0
        nets.push_back(NET_I2P);
3079
0
    }
3080
3081
0
    if (nets.empty()) {
3082
0
        return std::nullopt;
3083
0
    }
3084
3085
0
    const Network net{nets[FastRandomContext{}.randrange(nets.size())]};
3086
0
    if (net == NET_IPV4 || net == NET_IPV6) {
3087
0
        proxy = clearnet_proxy;
3088
0
    }
3089
0
    return net;
3090
0
}
3091
3092
size_t CConnman::PrivateBroadcast::NumToOpen() const
3093
0
{
3094
0
    return m_num_to_open;
3095
0
}
3096
3097
void CConnman::PrivateBroadcast::NumToOpenAdd(size_t n)
3098
7.27k
{
3099
7.27k
    m_num_to_open += n;
3100
7.27k
    m_num_to_open.notify_all();
3101
7.27k
}
3102
3103
size_t CConnman::PrivateBroadcast::NumToOpenSub(size_t n)
3104
0
{
3105
0
    size_t current_value{m_num_to_open.load()};
3106
0
    size_t new_value;
3107
0
    do {
3108
0
        new_value = current_value > n ? current_value - n : 0;
3109
0
    } while (!m_num_to_open.compare_exchange_strong(current_value, new_value));
3110
0
    return new_value;
3111
0
}
3112
3113
void CConnman::PrivateBroadcast::NumToOpenWait() const
3114
0
{
3115
0
    m_num_to_open.wait(0);
3116
0
}
3117
3118
std::optional<Proxy> CConnman::PrivateBroadcast::ProxyForIPv4or6() const
3119
0
{
3120
0
    if (m_outbound_tor_ok_at_least_once.load()) {
3121
0
        if (const auto tor_proxy = GetProxy(NET_ONION)) {
3122
0
            return tor_proxy;
3123
0
        }
3124
0
    }
3125
0
    return std::nullopt;
3126
0
}
3127
3128
Mutex NetEventsInterface::g_msgproc_mutex;
3129
3130
void CConnman::ThreadMessageHandler()
3131
0
{
3132
0
    LOCK(NetEventsInterface::g_msgproc_mutex);
Line
Count
Source
268
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
3133
3134
0
    while (!flagInterruptMsgProc)
3135
0
    {
3136
0
        bool fMoreWork = false;
3137
3138
0
        {
3139
            // Randomize the order in which we process messages from/to our peers.
3140
            // This prevents attacks in which an attacker exploits having multiple
3141
            // consecutive connections in the m_nodes list.
3142
0
            const NodesSnapshot snap{*this, /*shuffle=*/true};
3143
3144
0
            for (CNode* pnode : snap.Nodes()) {
3145
0
                if (pnode->fDisconnect)
3146
0
                    continue;
3147
3148
                // Receive messages
3149
0
                bool fMoreNodeWork{m_msgproc->ProcessMessages(*pnode, flagInterruptMsgProc)};
3150
0
                fMoreWork |= (fMoreNodeWork && !pnode->fPauseSend);
3151
0
                if (flagInterruptMsgProc)
3152
0
                    return;
3153
                // Send messages
3154
0
                m_msgproc->SendMessages(*pnode);
3155
3156
0
                if (flagInterruptMsgProc)
3157
0
                    return;
3158
0
            }
3159
0
        }
3160
3161
0
        WAIT_LOCK(mutexMsgProc, lock);
Line
Count
Source
274
0
#define WAIT_LOCK(cs, name) UniqueLock name(LOCK_ARGS(cs))
Line
Count
Source
272
0
#define LOCK_ARGS(cs) MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__
3162
0
        if (!fMoreWork) {
3163
0
            condMsgProc.wait_until(lock, std::chrono::steady_clock::now() + std::chrono::milliseconds(100), [this]() EXCLUSIVE_LOCKS_REQUIRED(mutexMsgProc) { return fMsgProcWake; });
3164
0
        }
3165
0
        fMsgProcWake = false;
3166
0
    }
3167
0
}
3168
3169
void CConnman::ThreadI2PAcceptIncoming()
3170
0
{
3171
0
    static constexpr auto err_wait_begin = 1s;
3172
0
    static constexpr auto err_wait_cap = 5min;
3173
0
    auto err_wait = err_wait_begin;
3174
3175
0
    bool advertising_listen_addr = false;
3176
0
    i2p::Connection conn;
3177
3178
0
    auto SleepOnFailure = [&]() {
3179
0
        m_interrupt_net->sleep_for(err_wait);
3180
0
        if (err_wait < err_wait_cap) {
3181
0
            err_wait += 1s;
3182
0
        }
3183
0
    };
3184
3185
0
    while (!m_interrupt_net->interrupted()) {
3186
3187
0
        if (!m_i2p_sam_session->Listen(conn)) {
3188
0
            if (advertising_listen_addr && conn.me.IsValid()) {
3189
0
                RemoveLocal(conn.me);
3190
0
                advertising_listen_addr = false;
3191
0
            }
3192
0
            SleepOnFailure();
3193
0
            continue;
3194
0
        }
3195
3196
0
        if (!advertising_listen_addr) {
3197
0
            AddLocal(conn.me, LOCAL_MANUAL);
3198
0
            advertising_listen_addr = true;
3199
0
        }
3200
3201
0
        if (!m_i2p_sam_session->Accept(conn)) {
3202
0
            SleepOnFailure();
3203
0
            continue;
3204
0
        }
3205
3206
0
        CreateNodeFromAcceptedSocket(std::move(conn.sock), NetPermissionFlags::None, conn.me, conn.peer);
3207
3208
0
        err_wait = err_wait_begin;
3209
0
    }
3210
0
}
3211
3212
void CConnman::ThreadPrivateBroadcast()
3213
0
{
3214
0
    AssertLockNotHeld(m_unused_i2p_sessions_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3215
3216
0
    size_t addrman_num_bad_addresses{0};
3217
0
    while (!m_interrupt_net->interrupted()) {
3218
3219
0
        if (!fNetworkActive) {
3220
0
            m_interrupt_net->sleep_for(5s);
3221
0
            continue;
3222
0
        }
3223
3224
0
        CountingSemaphoreGrant<> conn_max_grant{m_private_broadcast.m_sem_conn_max}; // Would block if too many are opened.
3225
3226
0
        m_private_broadcast.NumToOpenWait();
3227
3228
0
        if (m_interrupt_net->interrupted()) {
3229
0
            break;
3230
0
        }
3231
3232
0
        std::optional<Proxy> proxy;
3233
0
        const std::optional<Network> net{m_private_broadcast.PickNetwork(proxy)};
3234
0
        if (!net.has_value()) {
3235
0
            LogWarning("Unable to open -privatebroadcast connections: neither Tor nor I2P is reachable");
Line
Count
Source
98
0
#define LogWarning(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Warning, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3236
0
            m_interrupt_net->sleep_for(5s);
3237
0
            continue;
3238
0
        }
3239
3240
0
        const auto [addr, _] = addrman.get().Select(/*new_only=*/false, {net.value()});
3241
3242
0
        if (!addr.IsValid() || IsLocal(addr)) {
3243
0
            ++addrman_num_bad_addresses;
3244
0
            if (addrman_num_bad_addresses > 100) {
3245
0
                LogDebug(BCLog::PRIVBROADCAST, "Connections needed but addrman keeps returning bad addresses, will retry");
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
3246
0
                m_interrupt_net->sleep_for(500ms);
3247
0
            }
3248
0
            continue;
3249
0
        }
3250
0
        addrman_num_bad_addresses = 0;
3251
3252
0
        auto target_str{addr.ToStringAddrPort()};
3253
0
        if (proxy.has_value()) {
3254
0
            target_str += " through the proxy at " + proxy->ToString();
3255
0
        }
3256
3257
0
        const bool use_v2transport(addr.nServices & GetLocalServices() & NODE_P2P_V2);
3258
3259
0
        if (OpenNetworkConnection(addr,
3260
0
                                  /*fCountFailure=*/true,
3261
0
                                  std::move(conn_max_grant),
3262
0
                                  /*pszDest=*/nullptr,
3263
0
                                  ConnectionType::PRIVATE_BROADCAST,
3264
0
                                  use_v2transport,
3265
0
                                  proxy)) {
3266
0
            const size_t remaining{m_private_broadcast.NumToOpenSub(1)};
3267
0
            LogDebug(BCLog::PRIVBROADCAST, "Socket connected to %s; remaining connections to open: %d", target_str, remaining);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
3268
0
        } else {
3269
0
            const size_t remaining{m_private_broadcast.NumToOpen()};
3270
0
            if (remaining == 0) {
3271
0
                LogDebug(BCLog::PRIVBROADCAST, "Failed to connect to %s, will not retry, no more connections needed", target_str);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
3272
0
            } else {
3273
0
                LogDebug(BCLog::PRIVBROADCAST, "Failed to connect to %s, will retry to a different address; remaining connections to open: %d", target_str, remaining);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
3274
0
                m_interrupt_net->sleep_for(100ms); // Prevent busy loop if OpenNetworkConnection() fails fast repeatedly.
3275
0
            }
3276
0
        }
3277
0
    }
3278
0
}
3279
3280
bool CConnman::BindListenPort(const CService& addrBind, bilingual_str& strError, NetPermissionFlags permissions)
3281
0
{
3282
0
    int nOne = 1;
3283
3284
    // Create socket for listening for incoming connections
3285
0
    struct sockaddr_storage sockaddr;
3286
0
    socklen_t len = sizeof(sockaddr);
3287
0
    if (!addrBind.GetSockAddr((struct sockaddr*)&sockaddr, &len))
3288
0
    {
3289
0
        strError = Untranslated(strprintf("Bind address family for %s not supported", addrBind.ToStringAddrPort()));
Line
Count
Source
1172
0
#define strprintf tfm::format
3290
0
        LogError("%s\n", strError.original);
Line
Count
Source
99
0
#define LogError(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Error, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3291
0
        return false;
3292
0
    }
3293
3294
0
    std::unique_ptr<Sock> sock = CreateSock(addrBind.GetSAFamily(), SOCK_STREAM, IPPROTO_TCP);
3295
0
    if (!sock) {
3296
0
        strError = Untranslated(strprintf("Couldn't open socket for incoming connections (socket returned error %s)", NetworkErrorString(WSAGetLastError())));
Line
Count
Source
1172
0
#define strprintf tfm::format
        strError = Untranslated(strprintf("Couldn't open socket for incoming connections (socket returned error %s)", NetworkErrorString(WSAGetLastError())));
Line
Count
Source
59
0
#define WSAGetLastError()   errno
3297
0
        LogError("%s\n", strError.original);
Line
Count
Source
99
0
#define LogError(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Error, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3298
0
        return false;
3299
0
    }
3300
3301
    // Allow binding if the port is still in TIME_WAIT state after
3302
    // the program was closed and restarted.
3303
0
    if (sock->SetSockOpt(SOL_SOCKET, SO_REUSEADDR, &nOne, sizeof(int)) == SOCKET_ERROR) {
Line
Count
Source
68
0
#define SOCKET_ERROR        -1
3304
0
        strError = Untranslated(strprintf("Error setting SO_REUSEADDR on socket: %s, continuing anyway", NetworkErrorString(WSAGetLastError())));
Line
Count
Source
1172
0
#define strprintf tfm::format
        strError = Untranslated(strprintf("Error setting SO_REUSEADDR on socket: %s, continuing anyway", NetworkErrorString(WSAGetLastError())));
Line
Count
Source
59
0
#define WSAGetLastError()   errno
3305
0
        LogInfo("%s\n", strError.original);
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3306
0
    }
3307
3308
    // some systems don't have IPV6_V6ONLY but are always v6only; others do have the option
3309
    // and enable it by default or not. Try to enable it, if possible.
3310
0
    if (addrBind.IsIPv6()) {
3311
0
#ifdef IPV6_V6ONLY
3312
0
        if (sock->SetSockOpt(IPPROTO_IPV6, IPV6_V6ONLY, &nOne, sizeof(int)) == SOCKET_ERROR) {
Line
Count
Source
68
0
#define SOCKET_ERROR        -1
3313
0
            strError = Untranslated(strprintf("Error setting IPV6_V6ONLY on socket: %s, continuing anyway", NetworkErrorString(WSAGetLastError())));
Line
Count
Source
1172
0
#define strprintf tfm::format
            strError = Untranslated(strprintf("Error setting IPV6_V6ONLY on socket: %s, continuing anyway", NetworkErrorString(WSAGetLastError())));
Line
Count
Source
59
0
#define WSAGetLastError()   errno
3314
0
            LogInfo("%s\n", strError.original);
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3315
0
        }
3316
0
#endif
3317
#ifdef WIN32
3318
        int nProtLevel = PROTECTION_LEVEL_UNRESTRICTED;
3319
        if (sock->SetSockOpt(IPPROTO_IPV6, IPV6_PROTECTION_LEVEL, &nProtLevel, sizeof(int)) == SOCKET_ERROR) {
3320
            strError = Untranslated(strprintf("Error setting IPV6_PROTECTION_LEVEL on socket: %s, continuing anyway", NetworkErrorString(WSAGetLastError())));
3321
            LogInfo("%s\n", strError.original);
3322
        }
3323
#endif
3324
0
    }
3325
3326
0
    if (sock->Bind(reinterpret_cast<struct sockaddr*>(&sockaddr), len) == SOCKET_ERROR) {
Line
Count
Source
68
0
#define SOCKET_ERROR        -1
3327
0
        int nErr = WSAGetLastError();
Line
Count
Source
59
0
#define WSAGetLastError()   errno
3328
0
        if (nErr == WSAEADDRINUSE)
Line
Count
Source
66
0
#define WSAEADDRINUSE       EADDRINUSE
3329
0
            strError = strprintf(_("Unable to bind to %s on this computer. %s is probably already running."), addrBind.ToStringAddrPort(), CLIENT_NAME);
Line
Count
Source
1172
0
#define strprintf tfm::format
            strError = strprintf(_("Unable to bind to %s on this computer. %s is probably already running."), addrBind.ToStringAddrPort(), CLIENT_NAME);
Line
Count
Source
98
0
#define CLIENT_NAME "Bitcoin Core"
3330
0
        else
3331
0
            strError = strprintf(_("Unable to bind to %s on this computer (bind returned error %s)"), addrBind.ToStringAddrPort(), NetworkErrorString(nErr));
Line
Count
Source
1172
0
#define strprintf tfm::format
3332
0
        LogError("%s\n", strError.original);
Line
Count
Source
99
0
#define LogError(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Error, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3333
0
        return false;
3334
0
    }
3335
0
    LogInfo("Bound to %s\n", addrBind.ToStringAddrPort());
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3336
3337
    // Listen for incoming connections
3338
0
    if (sock->Listen(SOMAXCONN) == SOCKET_ERROR)
Line
Count
Source
68
0
#define SOCKET_ERROR        -1
3339
0
    {
3340
0
        strError = strprintf(_("Listening for incoming connections failed (listen returned error %s)"), NetworkErrorString(WSAGetLastError()));
Line
Count
Source
1172
0
#define strprintf tfm::format
        strError = strprintf(_("Listening for incoming connections failed (listen returned error %s)"), NetworkErrorString(WSAGetLastError()));
Line
Count
Source
59
0
#define WSAGetLastError()   errno
3341
0
        LogError("%s\n", strError.original);
Line
Count
Source
99
0
#define LogError(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Error, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3342
0
        return false;
3343
0
    }
3344
3345
0
    vhListenSocket.emplace_back(std::move(sock), permissions);
3346
0
    return true;
3347
0
}
3348
3349
void Discover()
3350
0
{
3351
0
    if (!fDiscover)
3352
0
        return;
3353
3354
0
    for (const CNetAddr &addr: GetLocalAddresses()) {
3355
0
        if (AddLocal(addr, LOCAL_IF) && fLogIPs) {
3356
0
            LogInfo("%s: %s\n", __func__, addr.ToStringAddr());
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3357
0
        }
3358
0
    }
3359
0
}
3360
3361
void CConnman::SetNetworkActive(bool active)
3362
0
{
3363
0
    LogInfo("%s: %s\n", __func__, active);
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3364
3365
0
    if (fNetworkActive == active) {
3366
0
        return;
3367
0
    }
3368
3369
0
    fNetworkActive = active;
3370
3371
0
    if (m_client_interface) {
3372
0
        m_client_interface->NotifyNetworkActiveChanged(fNetworkActive);
3373
0
    }
3374
0
}
3375
3376
CConnman::CConnman(uint64_t nSeed0In,
3377
                   uint64_t nSeed1In,
3378
                   AddrMan& addrman_in,
3379
                   const NetGroupManager& netgroupman,
3380
                   const CChainParams& params,
3381
                   bool network_active,
3382
                   std::shared_ptr<CThreadInterrupt> interrupt_net)
3383
0
    : addrman(addrman_in)
3384
0
    , m_netgroupman{netgroupman}
3385
0
    , nSeed0(nSeed0In)
3386
0
    , nSeed1(nSeed1In)
3387
0
    , m_interrupt_net{interrupt_net}
3388
0
    , m_params(params)
3389
0
{
3390
0
    SetTryNewOutboundPeer(false);
3391
3392
0
    Options connOptions;
3393
0
    Init(connOptions);
3394
0
    SetNetworkActive(network_active);
3395
0
}
3396
3397
NodeId CConnman::GetNewNodeId()
3398
0
{
3399
0
    return nLastNodeId.fetch_add(1, std::memory_order_relaxed);
3400
0
}
3401
3402
uint16_t CConnman::GetDefaultPort(Network net) const
3403
0
{
3404
0
    return net == NET_I2P ? I2P_SAM31_PORT : m_params.GetDefaultPort();
3405
0
}
3406
3407
uint16_t CConnman::GetDefaultPort(const std::string& addr) const
3408
0
{
3409
0
    CNetAddr a;
3410
0
    return a.SetSpecial(addr) ? GetDefaultPort(a.GetNetwork()) : m_params.GetDefaultPort();
3411
0
}
3412
3413
bool CConnman::Bind(const CService& addr_, unsigned int flags, NetPermissionFlags permissions)
3414
0
{
3415
0
    const CService addr{MaybeFlipIPv6toCJDNS(addr_)};
3416
3417
0
    bilingual_str strError;
3418
0
    if (!BindListenPort(addr, strError, permissions)) {
3419
0
        if ((flags & BF_REPORT_ERROR) && m_client_interface) {
3420
0
            m_client_interface->ThreadSafeMessageBox(strError, CClientUIInterface::MSG_ERROR);
3421
0
        }
3422
0
        return false;
3423
0
    }
3424
3425
0
    if (addr.IsRoutable() && fDiscover && !(flags & BF_DONT_ADVERTISE) && !NetPermissions::HasFlag(permissions, NetPermissionFlags::NoBan)) {
3426
0
        AddLocal(addr, LOCAL_BIND);
3427
0
    }
3428
3429
0
    return true;
3430
0
}
3431
3432
bool CConnman::InitBinds(const Options& options)
3433
0
{
3434
0
    for (const auto& addrBind : options.vBinds) {
3435
0
        if (!Bind(addrBind, BF_REPORT_ERROR, NetPermissionFlags::None)) {
3436
0
            return false;
3437
0
        }
3438
0
    }
3439
0
    for (const auto& addrBind : options.vWhiteBinds) {
3440
0
        if (!Bind(addrBind.m_service, BF_REPORT_ERROR, addrBind.m_flags)) {
3441
0
            return false;
3442
0
        }
3443
0
    }
3444
0
    for (const auto& addr_bind : options.onion_binds) {
3445
0
        if (!Bind(addr_bind, BF_REPORT_ERROR | BF_DONT_ADVERTISE, NetPermissionFlags::None)) {
3446
0
            return false;
3447
0
        }
3448
0
    }
3449
0
    if (options.bind_on_any) {
3450
        // Don't consider errors to bind on IPv6 "::" fatal because the host OS
3451
        // may not have IPv6 support and the user did not explicitly ask us to
3452
        // bind on that.
3453
0
        const CService ipv6_any{in6_addr(COMPAT_IN6ADDR_ANY_INIT), GetListenPort()}; // ::
Line
Count
Source
45
0
#define COMPAT_IN6ADDR_ANY_INIT IN6ADDR_ANY_INIT
3454
0
        Bind(ipv6_any, BF_NONE, NetPermissionFlags::None);
3455
3456
0
        struct in_addr inaddr_any;
3457
0
        inaddr_any.s_addr = htonl(INADDR_ANY);
3458
0
        const CService ipv4_any{inaddr_any, GetListenPort()}; // 0.0.0.0
3459
0
        if (!Bind(ipv4_any, BF_REPORT_ERROR, NetPermissionFlags::None)) {
3460
0
            return false;
3461
0
        }
3462
0
    }
3463
0
    return true;
3464
0
}
3465
3466
bool CConnman::Start(CScheduler& scheduler, const Options& connOptions)
3467
0
{
3468
0
    AssertLockNotHeld(m_total_bytes_sent_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3469
0
    Init(connOptions);
3470
3471
0
    if (fListen && !InitBinds(connOptions)) {
3472
0
        if (m_client_interface) {
3473
0
            m_client_interface->ThreadSafeMessageBox(
3474
0
                _("Failed to listen on any port. Use -listen=0 if you want this."),
3475
0
                CClientUIInterface::MSG_ERROR);
3476
0
        }
3477
0
        return false;
3478
0
    }
3479
3480
0
    if (connOptions.m_i2p_accept_incoming) {
3481
0
        if (const auto i2p_sam = GetProxy(NET_I2P)) {
3482
0
            m_i2p_sam_session = std::make_unique<i2p::sam::Session>(gArgs.GetDataDirNet() / "i2p_private_key",
3483
0
                                                                    *i2p_sam, m_interrupt_net);
3484
0
        }
3485
0
    }
3486
3487
    // Randomize the order in which we may query seednode to potentially prevent connecting to the same one every restart (and signal that we have restarted)
3488
0
    std::vector<std::string> seed_nodes = connOptions.vSeedNodes;
3489
0
    if (!seed_nodes.empty()) {
3490
0
        std::shuffle(seed_nodes.begin(), seed_nodes.end(), FastRandomContext{});
3491
0
    }
3492
3493
0
    if (m_use_addrman_outgoing) {
3494
        // Load addresses from anchors.dat
3495
0
        m_anchors = ReadAnchors(gArgs.GetDataDirNet() / ANCHORS_DATABASE_FILENAME);
3496
0
        if (m_anchors.size() > MAX_BLOCK_RELAY_ONLY_ANCHORS) {
3497
0
            m_anchors.resize(MAX_BLOCK_RELAY_ONLY_ANCHORS);
3498
0
        }
3499
0
        LogInfo("%i block-relay-only anchors will be tried for connections.\n", m_anchors.size());
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3500
0
    }
3501
3502
0
    if (m_client_interface) {
3503
0
        m_client_interface->InitMessage(_("Starting network threads…"));
3504
0
    }
3505
3506
0
    fAddressesInitialized = true;
3507
3508
0
    if (semOutbound == nullptr) {
3509
        // initialize semaphore
3510
0
        semOutbound = std::make_unique<std::counting_semaphore<>>(std::min(m_max_automatic_outbound, m_max_automatic_connections));
3511
0
    }
3512
0
    if (semAddnode == nullptr) {
3513
        // initialize semaphore
3514
0
        semAddnode = std::make_unique<std::counting_semaphore<>>(m_max_addnode);
3515
0
    }
3516
3517
    //
3518
    // Start threads
3519
    //
3520
0
    assert(m_msgproc);
3521
0
    m_interrupt_net->reset();
3522
0
    flagInterruptMsgProc = false;
3523
3524
0
    {
3525
0
        LOCK(mutexMsgProc);
Line
Count
Source
268
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
3526
0
        fMsgProcWake = false;
3527
0
    }
3528
3529
    // Send and receive from sockets, accept connections
3530
0
    threadSocketHandler = std::thread(&util::TraceThread, "net", [this] { ThreadSocketHandler(); });
3531
3532
0
    if (!gArgs.GetBoolArg("-dnsseed", DEFAULT_DNSSEED))
3533
0
        LogInfo("DNS seeding disabled\n");
Line
Count
Source
97
0
#define LogInfo(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Info, /*should_ratelimit=*/true, __VA_ARGS__)
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
3534
0
    else
3535
0
        threadDNSAddressSeed = std::thread(&util::TraceThread, "dnsseed", [this] { ThreadDNSAddressSeed(); });
3536
3537
    // Initiate manual connections
3538
0
    threadOpenAddedConnections = std::thread(&util::TraceThread, "addcon", [this] { ThreadOpenAddedConnections(); });
3539
3540
0
    if (connOptions.m_use_addrman_outgoing && !connOptions.m_specified_outgoing.empty()) {
3541
0
        if (m_client_interface) {
3542
0
            m_client_interface->ThreadSafeMessageBox(
3543
0
                _("Cannot provide specific connections and have addrman find outgoing connections at the same time."),
3544
0
                CClientUIInterface::MSG_ERROR);
3545
0
        }
3546
0
        return false;
3547
0
    }
3548
0
    if (connOptions.m_use_addrman_outgoing || !connOptions.m_specified_outgoing.empty()) {
3549
0
        threadOpenConnections = std::thread(
3550
0
            &util::TraceThread, "opencon",
3551
0
            [this, connect = connOptions.m_specified_outgoing, seed_nodes = std::move(seed_nodes)] { ThreadOpenConnections(connect, seed_nodes); });
3552
0
    }
3553
3554
    // Process messages
3555
0
    threadMessageHandler = std::thread(&util::TraceThread, "msghand", [this] { ThreadMessageHandler(); });
3556
3557
0
    if (m_i2p_sam_session) {
3558
0
        threadI2PAcceptIncoming =
3559
0
            std::thread(&util::TraceThread, "i2paccept", [this] { ThreadI2PAcceptIncoming(); });
3560
0
    }
3561
3562
0
    if (gArgs.GetBoolArg("-privatebroadcast", DEFAULT_PRIVATE_BROADCAST)) {
3563
0
        threadPrivateBroadcast =
3564
0
            std::thread(&util::TraceThread, "privbcast", [this] { ThreadPrivateBroadcast(); });
3565
0
    }
3566
3567
    // Dump network addresses
3568
0
    scheduler.scheduleEvery([this] { DumpAddresses(); }, DUMP_PEERS_INTERVAL);
3569
3570
    // Run the ASMap Health check once and then schedule it to run every 24h.
3571
0
    if (m_netgroupman.UsingASMap()) {
3572
0
        ASMapHealthCheck();
3573
0
        scheduler.scheduleEvery([this] { ASMapHealthCheck(); }, ASMAP_HEALTH_CHECK_INTERVAL);
3574
0
    }
3575
3576
0
    return true;
3577
0
}
3578
3579
class CNetCleanup
3580
{
3581
public:
3582
    CNetCleanup() = default;
3583
3584
    ~CNetCleanup()
3585
0
    {
3586
#ifdef WIN32
3587
        // Shutdown Windows Sockets
3588
        WSACleanup();
3589
#endif
3590
0
    }
3591
};
3592
static CNetCleanup instance_of_cnetcleanup;
3593
3594
void CConnman::Interrupt()
3595
1
{
3596
1
    {
3597
1
        LOCK(mutexMsgProc);
Line
Count
Source
268
1
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
1
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
1
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
1
#define PASTE(x, y) x ## y
3598
1
        flagInterruptMsgProc = true;
3599
1
    }
3600
1
    condMsgProc.notify_all();
3601
3602
1
    (*m_interrupt_net)();
3603
1
    g_socks5_interrupt();
3604
3605
1
    if (semOutbound) {
3606
0
        for (int i=0; i<m_max_automatic_outbound; i++) {
3607
0
            semOutbound->release();
3608
0
        }
3609
0
    }
3610
3611
1
    if (semAddnode) {
3612
0
        for (int i=0; i<m_max_addnode; i++) {
3613
0
            semAddnode->release();
3614
0
        }
3615
0
    }
3616
3617
1
    m_private_broadcast.m_sem_conn_max.release();
3618
1
    m_private_broadcast.NumToOpenAdd(1); // Just unblock NumToOpenWait() to be able to continue with shutdown.
3619
1
}
3620
3621
void CConnman::StopThreads()
3622
1
{
3623
1
    if (threadPrivateBroadcast.joinable()) {
3624
0
        threadPrivateBroadcast.join();
3625
0
    }
3626
1
    if (threadI2PAcceptIncoming.joinable()) {
3627
0
        threadI2PAcceptIncoming.join();
3628
0
    }
3629
1
    if (threadMessageHandler.joinable())
3630
0
        threadMessageHandler.join();
3631
1
    if (threadOpenConnections.joinable())
3632
0
        threadOpenConnections.join();
3633
1
    if (threadOpenAddedConnections.joinable())
3634
0
        threadOpenAddedConnections.join();
3635
1
    if (threadDNSAddressSeed.joinable())
3636
0
        threadDNSAddressSeed.join();
3637
1
    if (threadSocketHandler.joinable())
3638
0
        threadSocketHandler.join();
3639
1
}
3640
3641
void CConnman::StopNodes()
3642
2.62k
{
3643
2.62k
    AssertLockNotHeld(m_reconnections_mutex);
Line
Count
Source
149
2.62k
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3644
3645
2.62k
    if (fAddressesInitialized) {
3646
0
        DumpAddresses();
3647
0
        fAddressesInitialized = false;
3648
3649
0
        if (m_use_addrman_outgoing) {
3650
            // Anchor connections are only dumped during clean shutdown.
3651
0
            std::vector<CAddress> anchors_to_dump = GetCurrentBlockRelayOnlyConns();
3652
0
            if (anchors_to_dump.size() > MAX_BLOCK_RELAY_ONLY_ANCHORS) {
3653
0
                anchors_to_dump.resize(MAX_BLOCK_RELAY_ONLY_ANCHORS);
3654
0
            }
3655
0
            DumpAnchors(gArgs.GetDataDirNet() / ANCHORS_DATABASE_FILENAME, anchors_to_dump);
3656
0
        }
3657
0
    }
3658
3659
    // Delete peer connections.
3660
2.62k
    std::vector<CNode*> nodes;
3661
2.62k
    WITH_LOCK(m_nodes_mutex, nodes.swap(m_nodes));
Line
Count
Source
299
2.62k
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
3662
3.75k
    for (CNode* pnode : nodes) {
3663
3.75k
        LogDebug(BCLog::NET, "Stopping node, %s", pnode->DisconnectMsg());
Line
Count
Source
117
3.75k
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
3.75k
    do {                                                               \
109
3.75k
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
3.75k
    } while (0)
3664
3.75k
        pnode->CloseSocketDisconnect();
3665
3.75k
        DeleteNode(pnode);
3666
3.75k
    }
3667
3668
2.62k
    for (CNode* pnode : m_nodes_disconnected) {
3669
0
        DeleteNode(pnode);
3670
0
    }
3671
2.62k
    m_nodes_disconnected.clear();
3672
2.62k
    WITH_LOCK(m_reconnections_mutex, m_reconnections.clear());
Line
Count
Source
299
2.62k
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
3673
2.62k
    vhListenSocket.clear();
3674
2.62k
    semOutbound.reset();
3675
2.62k
    semAddnode.reset();
3676
2.62k
}
3677
3678
void CConnman::DeleteNode(CNode* pnode)
3679
3.75k
{
3680
3.75k
    assert(pnode);
3681
3.75k
    m_msgproc->FinalizeNode(*pnode);
3682
3.75k
    delete pnode;
3683
3.75k
}
3684
3685
CConnman::~CConnman()
3686
1
{
3687
1
    Interrupt();
3688
1
    Stop();
3689
1
}
3690
3691
std::vector<CAddress> CConnman::GetAddressesUnsafe(size_t max_addresses, size_t max_pct, std::optional<Network> network, const bool filtered) const
3692
0
{
3693
0
    std::vector<CAddress> addresses = addrman.get().GetAddr(max_addresses, max_pct, network, filtered);
3694
0
    if (m_banman) {
3695
0
        addresses.erase(std::remove_if(addresses.begin(), addresses.end(),
3696
0
                        [this](const CAddress& addr){return m_banman->IsDiscouraged(addr) || m_banman->IsBanned(addr);}),
3697
0
                        addresses.end());
3698
0
    }
3699
0
    return addresses;
3700
0
}
3701
3702
std::vector<CAddress> CConnman::GetAddresses(CNode& requestor, size_t max_addresses, size_t max_pct)
3703
0
{
3704
0
    uint64_t network_id = requestor.m_network_key;
3705
0
    const auto current_time = GetTime<std::chrono::microseconds>();
3706
0
    auto r = m_addr_response_caches.emplace(network_id, CachedAddrResponse{});
3707
0
    CachedAddrResponse& cache_entry = r.first->second;
3708
0
    if (cache_entry.m_cache_entry_expiration < current_time) { // If emplace() added new one it has expiration 0.
3709
0
        cache_entry.m_addrs_response_cache = GetAddressesUnsafe(max_addresses, max_pct, /*network=*/std::nullopt);
3710
        // Choosing a proper cache lifetime is a trade-off between the privacy leak minimization
3711
        // and the usefulness of ADDR responses to honest users.
3712
        //
3713
        // Longer cache lifetime makes it more difficult for an attacker to scrape
3714
        // enough AddrMan data to maliciously infer something useful.
3715
        // By the time an attacker scraped enough AddrMan records, most of
3716
        // the records should be old enough to not leak topology info by
3717
        // e.g. analyzing real-time changes in timestamps.
3718
        //
3719
        // It takes only several hundred requests to scrape everything from an AddrMan containing 100,000 nodes,
3720
        // so ~24 hours of cache lifetime indeed makes the data less inferable by the time
3721
        // most of it could be scraped (considering that timestamps are updated via
3722
        // ADDR self-announcements and when nodes communicate).
3723
        // We also should be robust to those attacks which may not require scraping *full* victim's AddrMan
3724
        // (because even several timestamps of the same handful of nodes may leak privacy).
3725
        //
3726
        // On the other hand, longer cache lifetime makes ADDR responses
3727
        // outdated and less useful for an honest requestor, e.g. if most nodes
3728
        // in the ADDR response are no longer active.
3729
        //
3730
        // However, the churn in the network is known to be rather low. Since we consider
3731
        // nodes to be "terrible" (see IsTerrible()) if the timestamps are older than 30 days,
3732
        // max. 24 hours of "penalty" due to cache shouldn't make any meaningful difference
3733
        // in terms of the freshness of the response.
3734
0
        cache_entry.m_cache_entry_expiration = current_time +
3735
0
            21h + FastRandomContext().randrange<std::chrono::microseconds>(6h);
3736
0
    }
3737
0
    return cache_entry.m_addrs_response_cache;
3738
0
}
3739
3740
bool CConnman::AddNode(const AddedNodeParams& add)
3741
0
{
3742
0
    const CService resolved(LookupNumeric(add.m_added_node, GetDefaultPort(add.m_added_node)));
3743
0
    const bool resolved_is_valid{resolved.IsValid()};
3744
3745
0
    LOCK(m_added_nodes_mutex);
Line
Count
Source
268
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
3746
0
    for (const auto& it : m_added_node_params) {
3747
0
        if (add.m_added_node == it.m_added_node || (resolved_is_valid && resolved == LookupNumeric(it.m_added_node, GetDefaultPort(it.m_added_node)))) return false;
3748
0
    }
3749
3750
0
    m_added_node_params.push_back(add);
3751
0
    return true;
3752
0
}
3753
3754
bool CConnman::RemoveAddedNode(std::string_view node)
3755
0
{
3756
0
    LOCK(m_added_nodes_mutex);
Line
Count
Source
268
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
3757
0
    for (auto it = m_added_node_params.begin(); it != m_added_node_params.end(); ++it) {
3758
0
        if (node == it->m_added_node) {
3759
0
            m_added_node_params.erase(it);
3760
0
            return true;
3761
0
        }
3762
0
    }
3763
0
    return false;
3764
0
}
3765
3766
bool CConnman::AddedNodesContain(const CAddress& addr) const
3767
0
{
3768
0
    AssertLockNotHeld(m_added_nodes_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3769
0
    const std::string addr_str{addr.ToStringAddr()};
3770
0
    const std::string addr_port_str{addr.ToStringAddrPort()};
3771
0
    LOCK(m_added_nodes_mutex);
Line
Count
Source
268
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
3772
0
    return (m_added_node_params.size() < 24 // bound the query to a reasonable limit
3773
0
            && std::any_of(m_added_node_params.cbegin(), m_added_node_params.cend(),
3774
0
                           [&](const auto& p) { return p.m_added_node == addr_str || p.m_added_node == addr_port_str; }));
3775
0
}
3776
3777
size_t CConnman::GetNodeCount(ConnectionDirection flags) const
3778
0
{
3779
0
    LOCK(m_nodes_mutex);
Line
Count
Source
268
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
3780
0
    if (flags == ConnectionDirection::Both) // Shortcut if we want total
3781
0
        return m_nodes.size();
3782
3783
0
    int nNum = 0;
3784
0
    for (const auto& pnode : m_nodes) {
3785
0
        if (flags & (pnode->IsInboundConn() ? ConnectionDirection::In : ConnectionDirection::Out)) {
3786
0
            nNum++;
3787
0
        }
3788
0
    }
3789
3790
0
    return nNum;
3791
0
}
3792
3793
3794
std::map<CNetAddr, LocalServiceInfo> CConnman::getNetLocalAddresses() const
3795
0
{
3796
0
    LOCK(g_maplocalhost_mutex);
Line
Count
Source
268
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
3797
0
    return mapLocalHost;
3798
0
}
3799
3800
uint32_t CConnman::GetMappedAS(const CNetAddr& addr) const
3801
1.40k
{
3802
1.40k
    return m_netgroupman.GetMappedAS(addr);
3803
1.40k
}
3804
3805
void CConnman::GetNodeStats(std::vector<CNodeStats>& vstats) const
3806
0
{
3807
0
    vstats.clear();
3808
0
    LOCK(m_nodes_mutex);
Line
Count
Source
268
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
3809
0
    vstats.reserve(m_nodes.size());
3810
0
    for (CNode* pnode : m_nodes) {
3811
0
        vstats.emplace_back();
3812
0
        pnode->CopyStats(vstats.back());
3813
0
        vstats.back().m_mapped_as = GetMappedAS(pnode->addr);
3814
0
    }
3815
0
}
3816
3817
bool CConnman::DisconnectNode(std::string_view strNode)
3818
0
{
3819
0
    LOCK(m_nodes_mutex);
Line
Count
Source
268
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
3820
0
    auto it = std::ranges::find_if(m_nodes, [&strNode](CNode* node) { return node->m_addr_name == strNode; });
3821
0
    if (it != m_nodes.end()) {
3822
0
        CNode* node{*it};
3823
0
        LogDebug(BCLog::NET, "disconnect by address%s match, %s", (fLogIPs ? strprintf("=%s", strNode) : ""), node->DisconnectMsg());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
3824
0
        node->fDisconnect = true;
3825
0
        return true;
3826
0
    }
3827
0
    return false;
3828
0
}
3829
3830
bool CConnman::DisconnectNode(const CSubNet& subnet)
3831
0
{
3832
0
    bool disconnected = false;
3833
0
    LOCK(m_nodes_mutex);
Line
Count
Source
268
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
3834
0
    for (CNode* pnode : m_nodes) {
3835
0
        if (subnet.Match(pnode->addr)) {
3836
0
            LogDebug(BCLog::NET, "disconnect by subnet%s match, %s", (fLogIPs ? strprintf("=%s", subnet.ToString()) : ""), pnode->DisconnectMsg());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
3837
0
            pnode->fDisconnect = true;
3838
0
            disconnected = true;
3839
0
        }
3840
0
    }
3841
0
    return disconnected;
3842
0
}
3843
3844
bool CConnman::DisconnectNode(const CNetAddr& addr)
3845
0
{
3846
0
    return DisconnectNode(CSubNet(addr));
3847
0
}
3848
3849
bool CConnman::DisconnectNode(NodeId id)
3850
0
{
3851
0
    LOCK(m_nodes_mutex);
Line
Count
Source
268
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
3852
0
    for(CNode* pnode : m_nodes) {
3853
0
        if (id == pnode->GetId()) {
3854
0
            LogDebug(BCLog::NET, "disconnect by id, %s", pnode->DisconnectMsg());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
3855
0
            pnode->fDisconnect = true;
3856
0
            return true;
3857
0
        }
3858
0
    }
3859
0
    return false;
3860
0
}
3861
3862
void CConnman::RecordBytesRecv(uint64_t bytes)
3863
0
{
3864
0
    nTotalBytesRecv += bytes;
3865
0
}
3866
3867
void CConnman::RecordBytesSent(uint64_t bytes)
3868
8.27k
{
3869
8.27k
    AssertLockNotHeld(m_total_bytes_sent_mutex);
Line
Count
Source
149
8.27k
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3870
8.27k
    LOCK(m_total_bytes_sent_mutex);
Line
Count
Source
268
8.27k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
8.27k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
8.27k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
8.27k
#define PASTE(x, y) x ## y
3871
3872
8.27k
    nTotalBytesSent += bytes;
3873
3874
8.27k
    const auto now = GetTime<std::chrono::seconds>();
3875
8.27k
    if (nMaxOutboundCycleStartTime + MAX_UPLOAD_TIMEFRAME < now)
3876
1
    {
3877
        // timeframe expired, reset cycle
3878
1
        nMaxOutboundCycleStartTime = now;
3879
1
        nMaxOutboundTotalBytesSentInCycle = 0;
3880
1
    }
3881
3882
8.27k
    nMaxOutboundTotalBytesSentInCycle += bytes;
3883
8.27k
}
3884
3885
uint64_t CConnman::GetMaxOutboundTarget() const
3886
0
{
3887
0
    AssertLockNotHeld(m_total_bytes_sent_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3888
0
    LOCK(m_total_bytes_sent_mutex);
Line
Count
Source
268
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
3889
0
    return nMaxOutboundLimit;
3890
0
}
3891
3892
std::chrono::seconds CConnman::GetMaxOutboundTimeframe() const
3893
0
{
3894
0
    return MAX_UPLOAD_TIMEFRAME;
3895
0
}
3896
3897
std::chrono::seconds CConnman::GetMaxOutboundTimeLeftInCycle() const
3898
0
{
3899
0
    AssertLockNotHeld(m_total_bytes_sent_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3900
0
    LOCK(m_total_bytes_sent_mutex);
Line
Count
Source
268
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
3901
0
    return GetMaxOutboundTimeLeftInCycle_();
3902
0
}
3903
3904
std::chrono::seconds CConnman::GetMaxOutboundTimeLeftInCycle_() const
3905
0
{
3906
0
    AssertLockHeld(m_total_bytes_sent_mutex);
Line
Count
Source
144
0
#define AssertLockHeld(cs) AssertLockHeldInternal(#cs, __FILE__, __LINE__, &cs)
3907
3908
0
    if (nMaxOutboundLimit == 0)
3909
0
        return 0s;
3910
3911
0
    if (nMaxOutboundCycleStartTime.count() == 0)
3912
0
        return MAX_UPLOAD_TIMEFRAME;
3913
3914
0
    const std::chrono::seconds cycleEndTime = nMaxOutboundCycleStartTime + MAX_UPLOAD_TIMEFRAME;
3915
0
    const auto now = GetTime<std::chrono::seconds>();
3916
0
    return (cycleEndTime < now) ? 0s : cycleEndTime - now;
3917
0
}
3918
3919
bool CConnman::OutboundTargetReached(bool historicalBlockServingLimit) const
3920
0
{
3921
0
    AssertLockNotHeld(m_total_bytes_sent_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3922
0
    LOCK(m_total_bytes_sent_mutex);
Line
Count
Source
268
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
3923
0
    if (nMaxOutboundLimit == 0)
3924
0
        return false;
3925
3926
0
    if (historicalBlockServingLimit)
3927
0
    {
3928
        // keep a large enough buffer to at least relay each block once
3929
0
        const std::chrono::seconds timeLeftInCycle = GetMaxOutboundTimeLeftInCycle_();
3930
0
        const uint64_t buffer = timeLeftInCycle / std::chrono::minutes{10} * MAX_BLOCK_SERIALIZED_SIZE;
3931
0
        if (buffer >= nMaxOutboundLimit || nMaxOutboundTotalBytesSentInCycle >= nMaxOutboundLimit - buffer)
3932
0
            return true;
3933
0
    }
3934
0
    else if (nMaxOutboundTotalBytesSentInCycle >= nMaxOutboundLimit)
3935
0
        return true;
3936
3937
0
    return false;
3938
0
}
3939
3940
uint64_t CConnman::GetOutboundTargetBytesLeft() const
3941
0
{
3942
0
    AssertLockNotHeld(m_total_bytes_sent_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3943
0
    LOCK(m_total_bytes_sent_mutex);
Line
Count
Source
268
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
3944
0
    if (nMaxOutboundLimit == 0)
3945
0
        return 0;
3946
3947
0
    return (nMaxOutboundTotalBytesSentInCycle >= nMaxOutboundLimit) ? 0 : nMaxOutboundLimit - nMaxOutboundTotalBytesSentInCycle;
3948
0
}
3949
3950
uint64_t CConnman::GetTotalBytesRecv() const
3951
0
{
3952
0
    return nTotalBytesRecv;
3953
0
}
3954
3955
uint64_t CConnman::GetTotalBytesSent() const
3956
0
{
3957
0
    AssertLockNotHeld(m_total_bytes_sent_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
3958
0
    LOCK(m_total_bytes_sent_mutex);
Line
Count
Source
268
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
3959
0
    return nTotalBytesSent;
3960
0
}
3961
3962
ServiceFlags CConnman::GetLocalServices() const
3963
0
{
3964
0
    return m_local_services;
3965
0
}
3966
3967
static std::unique_ptr<Transport> MakeTransport(NodeId id, bool use_v2transport, bool inbound) noexcept
3968
3.75k
{
3969
3.75k
    if (use_v2transport) {
3970
0
        return std::make_unique<V2Transport>(id, /*initiating=*/!inbound);
3971
3.75k
    } else {
3972
3.75k
        return std::make_unique<V1Transport>(id);
3973
3.75k
    }
3974
3.75k
}
3975
3976
CNode::CNode(NodeId idIn,
3977
             std::shared_ptr<Sock> sock,
3978
             const CAddress& addrIn,
3979
             uint64_t nKeyedNetGroupIn,
3980
             uint64_t nLocalHostNonceIn,
3981
             const CService& addrBindIn,
3982
             const std::string& addrNameIn,
3983
             ConnectionType conn_type_in,
3984
             bool inbound_onion,
3985
             uint64_t network_key,
3986
             CNodeOptions&& node_opts)
3987
3.75k
    : m_transport{MakeTransport(idIn, node_opts.use_v2transport, conn_type_in == ConnectionType::INBOUND)},
3988
3.75k
      m_permission_flags{node_opts.permission_flags},
3989
3.75k
      m_sock{sock},
3990
3.75k
      m_connected{GetTime<std::chrono::seconds>()},
3991
3.75k
      addr{addrIn},
3992
3.75k
      addrBind{addrBindIn},
3993
3.75k
      m_addr_name{addrNameIn.empty() ? 
addr.ToStringAddrPort()2.91k
:
addrNameIn840
},
3994
3.75k
      m_dest(addrNameIn),
3995
3.75k
      m_inbound_onion{inbound_onion},
3996
3.75k
      m_prefer_evict{node_opts.prefer_evict},
3997
3.75k
      nKeyedNetGroup{nKeyedNetGroupIn},
3998
3.75k
      m_network_key{network_key},
3999
3.75k
      m_conn_type{conn_type_in},
4000
3.75k
      id{idIn},
4001
3.75k
      nLocalHostNonce{nLocalHostNonceIn},
4002
3.75k
      m_recv_flood_size{node_opts.recv_flood_size},
4003
3.75k
      m_i2p_sam_session{std::move(node_opts.i2p_sam_session)}
4004
3.75k
{
4005
3.75k
    if (inbound_onion) assert(conn_type_in == ConnectionType::INBOUND);
4006
4007
131k
    
for (const auto& msg : ALL_NET_MESSAGE_TYPES)3.75k
{
4008
131k
        mapRecvBytesPerMsgType[msg] = 0;
4009
131k
    }
4010
3.75k
    mapRecvBytesPerMsgType[NET_MESSAGE_TYPE_OTHER] = 0;
4011
4012
3.75k
    if (fLogIPs) {
4013
0
        LogDebug(BCLog::NET, "Added connection to %s peer=%d\n", m_addr_name, id);
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
4014
3.75k
    } else {
4015
3.75k
        LogDebug(BCLog::NET, "Added connection peer=%d\n", id);
Line
Count
Source
117
3.75k
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
3.75k
    do {                                                               \
109
3.75k
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
3.75k
    } while (0)
4016
3.75k
    }
4017
3.75k
}
4018
4019
void CNode::MarkReceivedMsgsForProcessing()
4020
10.7k
{
4021
10.7k
    AssertLockNotHeld(m_msg_process_queue_mutex);
Line
Count
Source
149
10.7k
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
4022
4023
10.7k
    size_t nSizeAdded = 0;
4024
10.7k
    for (const auto& msg : vRecvMsg) {
4025
        // vRecvMsg contains only completed CNetMessage
4026
        // the single possible partially deserialized message are held by TransportDeserializer
4027
10.7k
        nSizeAdded += msg.GetMemoryUsage();
4028
10.7k
    }
4029
4030
10.7k
    LOCK(m_msg_process_queue_mutex);
Line
Count
Source
268
10.7k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
10.7k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
10.7k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
10.7k
#define PASTE(x, y) x ## y
4031
10.7k
    m_msg_process_queue.splice(m_msg_process_queue.end(), vRecvMsg);
4032
10.7k
    m_msg_process_queue_size += nSizeAdded;
4033
10.7k
    fPauseRecv = m_msg_process_queue_size > m_recv_flood_size;
4034
10.7k
}
4035
4036
std::optional<std::pair<CNetMessage, bool>> CNode::PollMessage()
4037
16.3k
{
4038
16.3k
    LOCK(m_msg_process_queue_mutex);
Line
Count
Source
268
16.3k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
16.3k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
16.3k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
16.3k
#define PASTE(x, y) x ## y
4039
16.3k
    if (m_msg_process_queue.empty()) 
return std::nullopt5.83k
;
4040
4041
10.4k
    std::list<CNetMessage> msgs;
4042
    // Just take one message
4043
10.4k
    msgs.splice(msgs.begin(), m_msg_process_queue, m_msg_process_queue.begin());
4044
10.4k
    m_msg_process_queue_size -= msgs.front().GetMemoryUsage();
4045
10.4k
    fPauseRecv = m_msg_process_queue_size > m_recv_flood_size;
4046
4047
10.4k
    return std::make_pair(std::move(msgs.front()), !m_msg_process_queue.empty());
4048
16.3k
}
4049
4050
bool CConnman::NodeFullyConnected(const CNode* pnode)
4051
0
{
4052
0
    return pnode && pnode->fSuccessfullyConnected && !pnode->fDisconnect;
4053
0
}
4054
4055
/// Private broadcast connections only need to send certain message types.
4056
/// Other messages are not needed and may degrade privacy.
4057
static bool IsOutboundMessageAllowedInPrivateBroadcast(std::string_view type) noexcept
4058
3.10k
{
4059
3.10k
    return type == NetMsgType::VERSION ||
4060
3.10k
           
type == NetMsgType::VERACK1.95k
||
4061
3.10k
           
type == NetMsgType::INV1.62k
||
4062
3.10k
           
type == NetMsgType::TX1.37k
||
4063
3.10k
           
type == NetMsgType::PING685
;
4064
3.10k
}
4065
4066
void CConnman::PushMessage(CNode* pnode, CSerializedNetMsg&& msg)
4067
10.6k
{
4068
10.6k
    AssertLockNotHeld(m_total_bytes_sent_mutex);
Line
Count
Source
149
10.6k
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
4069
4070
10.6k
    if (pnode->IsPrivateBroadcastConn() && 
!IsOutboundMessageAllowedInPrivateBroadcast(msg.m_type)3.10k
) {
4071
0
        LogDebug(BCLog::PRIVBROADCAST, "Omitting send of message '%s', %s", msg.m_type, pnode->LogPeer());
Line
Count
Source
117
0
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
0
    do {                                                               \
109
0
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
0
    } while (0)
4072
0
        return;
4073
0
    }
4074
4075
10.6k
    if (!m_private_broadcast.m_outbound_tor_ok_at_least_once.load() && 
!pnode->IsInboundConn()221
&&
4076
10.6k
        
pnode->addr.IsTor()188
&&
msg.m_type == NetMsgType::VERACK4
) {
4077
        // If we are sending the peer VERACK that means we successfully sent
4078
        // and received another message to/from that peer (VERSION).
4079
1
        m_private_broadcast.m_outbound_tor_ok_at_least_once.store(true);
4080
1
    }
4081
4082
10.6k
    size_t nMessageSize = msg.data.size();
4083
10.6k
    LogDebug(BCLog::NET, "sending %s (%d bytes) peer=%d\n", msg.m_type, nMessageSize, pnode->GetId());
Line
Count
Source
117
10.6k
#define LogDebug(category, ...) detail_LogIfCategoryAndLevelEnabled(category, BCLog::Level::Debug, __VA_ARGS__)
Line
Count
Source
108
10.6k
    do {                                                               \
109
10.6k
        if (util::log::ShouldLog((category), (level))) {               \
110
0
            bool rate_limit{level >= BCLog::Level::Info};              \
111
0
            Assume(!rate_limit); /*Only called with the levels below*/ \
Line
Count
Source
128
0
#define Assume(val) inline_assertion_check<false>(val, std::source_location::current(), #val)
112
0
            LogPrintLevel_(category, level, rate_limit, __VA_ARGS__);  \
Line
Count
Source
91
0
#define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(SourceLocation{__func__}, category, level, should_ratelimit, __VA_ARGS__)
113
0
        }                                                              \
114
10.6k
    } while (0)
4084
10.6k
    if (m_capture_messages) {
4085
0
        CaptureMessage(pnode->addr, msg.m_type, msg.data, /*is_incoming=*/false);
4086
0
    }
4087
4088
10.6k
    TRACEPOINT(net, outbound_message,
4089
10.6k
        pnode->GetId(),
4090
10.6k
        pnode->m_addr_name.c_str(),
4091
10.6k
        pnode->ConnectionTypeAsString().c_str(),
4092
10.6k
        msg.m_type.c_str(),
4093
10.6k
        msg.data.size(),
4094
10.6k
        msg.data.data()
4095
10.6k
    );
4096
4097
10.6k
    size_t nBytesSent = 0;
4098
10.6k
    {
4099
10.6k
        LOCK(pnode->cs_vSend);
Line
Count
Source
268
10.6k
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
10.6k
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
10.6k
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
10.6k
#define PASTE(x, y) x ## y
4100
        // Check if the transport still has unsent bytes, and indicate to it that we're about to
4101
        // give it a message to send.
4102
10.6k
        const auto& [to_send, more, _msg_type] =
4103
10.6k
            pnode->m_transport->GetBytesToSend(/*have_next_message=*/true);
4104
10.6k
        const bool queue_was_empty{to_send.empty() && 
pnode->vSendMsg.empty()8.89k
};
4105
4106
        // Update memory usage of send buffer.
4107
10.6k
        pnode->m_send_memusage += msg.GetMemoryUsage();
4108
10.6k
        if (pnode->m_send_memusage + pnode->m_transport->GetSendMemoryUsage() > nSendBufferMaxSize) pnode->fPauseSend = true;
4109
        // Move message to vSendMsg queue.
4110
10.6k
        pnode->vSendMsg.push_back(std::move(msg));
4111
4112
        // If there was nothing to send before, and there is now (predicted by the "more" value
4113
        // returned by the GetBytesToSend call above), attempt "optimistic write":
4114
        // because the poll/select loop may pause for SELECT_TIMEOUT_MILLISECONDS before actually
4115
        // doing a send, try sending from the calling thread if the queue was empty before.
4116
        // With a V1Transport, more will always be true here, because adding a message always
4117
        // results in sendable bytes there, but with V2Transport this is not the case (it may
4118
        // still be in the handshake).
4119
10.6k
        if (queue_was_empty && 
more8.89k
) {
4120
8.89k
            std::tie(nBytesSent, std::ignore) = SocketSendData(*pnode);
4121
8.89k
        }
4122
10.6k
    }
4123
10.6k
    if (nBytesSent) 
RecordBytesSent(nBytesSent)8.27k
;
4124
10.6k
}
4125
4126
bool CConnman::ForNode(NodeId id, std::function<bool(CNode* pnode)> func)
4127
0
{
4128
0
    CNode* found = nullptr;
4129
0
    LOCK(m_nodes_mutex);
Line
Count
Source
268
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
4130
0
    for (auto&& pnode : m_nodes) {
4131
0
        if(pnode->GetId() == id) {
4132
0
            found = pnode;
4133
0
            break;
4134
0
        }
4135
0
    }
4136
0
    return found != nullptr && NodeFullyConnected(found) && func(found);
4137
0
}
4138
4139
CSipHasher CConnman::GetDeterministicRandomizer(uint64_t id) const
4140
0
{
4141
0
    return CSipHasher(nSeed0, nSeed1).Write(id);
4142
0
}
4143
4144
uint64_t CConnman::CalculateKeyedNetGroup(const CNetAddr& address) const
4145
0
{
4146
0
    std::vector<unsigned char> vchNetGroup(m_netgroupman.GetGroup(address));
4147
4148
0
    return GetDeterministicRandomizer(RANDOMIZER_ID_NETGROUP).Write(vchNetGroup).Finalize();
4149
0
}
4150
4151
void CConnman::PerformReconnections()
4152
0
{
4153
0
    AssertLockNotHeld(m_reconnections_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
4154
0
    AssertLockNotHeld(m_unused_i2p_sessions_mutex);
Line
Count
Source
149
0
#define AssertLockNotHeld(cs) AssertLockNotHeldInline(#cs, __FILE__, __LINE__, &cs)
4155
0
    while (true) {
4156
        // Move first element of m_reconnections to todo (avoiding an allocation inside the lock).
4157
0
        decltype(m_reconnections) todo;
4158
0
        {
4159
0
            LOCK(m_reconnections_mutex);
Line
Count
Source
268
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
4160
0
            if (m_reconnections.empty()) break;
4161
0
            todo.splice(todo.end(), m_reconnections, m_reconnections.begin());
4162
0
        }
4163
4164
0
        auto& item = *todo.begin();
4165
0
        OpenNetworkConnection(item.addr_connect,
4166
                              // We only reconnect if the first attempt to connect succeeded at
4167
                              // connection time, but then failed after the CNode object was
4168
                              // created. Since we already know connecting is possible, do not
4169
                              // count failure to reconnect.
4170
0
                              /*fCountFailure=*/false,
4171
0
                              std::move(item.grant),
4172
0
                              item.destination.empty() ? nullptr : item.destination.c_str(),
4173
0
                              item.conn_type,
4174
0
                              item.use_v2transport);
4175
0
    }
4176
0
}
4177
4178
void CConnman::ASMapHealthCheck()
4179
0
{
4180
0
    const std::vector<CAddress> v4_addrs{GetAddressesUnsafe(/*max_addresses=*/0, /*max_pct=*/0, Network::NET_IPV4, /*filtered=*/false)};
4181
0
    const std::vector<CAddress> v6_addrs{GetAddressesUnsafe(/*max_addresses=*/0, /*max_pct=*/0, Network::NET_IPV6, /*filtered=*/false)};
4182
0
    std::vector<CNetAddr> clearnet_addrs;
4183
0
    clearnet_addrs.reserve(v4_addrs.size() + v6_addrs.size());
4184
0
    std::transform(v4_addrs.begin(), v4_addrs.end(), std::back_inserter(clearnet_addrs),
4185
0
        [](const CAddress& addr) { return static_cast<CNetAddr>(addr); });
4186
0
    std::transform(v6_addrs.begin(), v6_addrs.end(), std::back_inserter(clearnet_addrs),
4187
0
        [](const CAddress& addr) { return static_cast<CNetAddr>(addr); });
4188
0
    m_netgroupman.ASMapHealthCheck(clearnet_addrs);
4189
0
}
4190
4191
// Dump binary message to file, with timestamp.
4192
static void CaptureMessageToFile(const CAddress& addr,
4193
                                 const std::string& msg_type,
4194
                                 std::span<const unsigned char> data,
4195
                                 bool is_incoming)
4196
0
{
4197
    // Note: This function captures the message at the time of processing,
4198
    // not at socket receive/send time.
4199
    // This ensures that the messages are always in order from an application
4200
    // layer (processing) perspective.
4201
0
    auto now = GetTime<std::chrono::microseconds>();
4202
4203
    // Windows folder names cannot include a colon
4204
0
    std::string clean_addr = addr.ToStringAddrPort();
4205
0
    std::replace(clean_addr.begin(), clean_addr.end(), ':', '_');
4206
4207
0
    fs::path base_path = gArgs.GetDataDirNet() / "message_capture" / fs::u8path(clean_addr);
4208
0
    fs::create_directories(base_path);
4209
4210
0
    fs::path path = base_path / (is_incoming ? "msgs_recv.dat" : "msgs_sent.dat");
4211
0
    AutoFile f{fsbridge::fopen(path, "ab")};
4212
4213
0
    ser_writedata64(f, now.count());
4214
0
    f << std::span{msg_type};
4215
0
    for (auto i = msg_type.length(); i < CMessageHeader::MESSAGE_TYPE_SIZE; ++i) {
4216
0
        f << uint8_t{'\0'};
4217
0
    }
4218
0
    uint32_t size = data.size();
4219
0
    ser_writedata32(f, size);
4220
0
    f << data;
4221
4222
0
    if (f.fclose() != 0) {
4223
0
        throw std::ios_base::failure(
4224
0
            strprintf("Error closing %s after write, file contents are likely incomplete", fs::PathToString(path)));
Line
Count
Source
1172
0
#define strprintf tfm::format
4225
0
    }
4226
0
}
4227
4228
std::function<void(const CAddress& addr,
4229
                   const std::string& msg_type,
4230
                   std::span<const unsigned char> data,
4231
                   bool is_incoming)>
4232
    CaptureMessage = CaptureMessageToFile;