mirror of
https://github.com/oxen-io/lokinet.git
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b81f7025c9
Replaces custom logging system with spdlog-based oxen logging. This commit mainly replaces the backend logging with the spdlog-based system, but doesn't (yet) convert all the existing LogWarn, etc. to use the new format-based logging. New logging statements will look like: llarp::log::warning(cat, "blah: {}", val); where `cat` should be set up in each .cpp or cluster of .cpp files, as described in the oxen-logging README. As part of spdlog we get fmt, which gives us nice format strings, where are applied generously in this commit. Making types printable now requires two steps: - add a ToString() method - add this specialization: template <> constexpr inline bool llarp::IsToStringFormattable<llarp::Whatever> = true; This will then allow the type to be printed as a "{}" value in a fmt::format string. This is applied to all our printable types here, and all of the `operator<<` are removed. This commit also: - replaces various uses of `operator<<` to ToString() - replaces various uses of std::stringstream with either fmt::format or plain std::string - Rename some to_string and toString() methods to ToString() for consistency (and to work with fmt) - Replace `stringify(...)` and `make_exception` usage with fmt::format (and remove stringify/make_exception from util/str.hpp).
287 lines
6.8 KiB
C++
287 lines
6.8 KiB
C++
#include "nodedb.hpp"
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#include "crypto/crypto.hpp"
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#include "crypto/types.hpp"
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#include "router_contact.hpp"
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#include "util/buffer.hpp"
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#include "util/fs.hpp"
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#include "util/logging.hpp"
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#include "util/time.hpp"
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#include "util/mem.hpp"
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#include "util/str.hpp"
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#include "dht/kademlia.hpp"
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#include <algorithm>
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#include <fstream>
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#include <unordered_map>
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#include <utility>
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static const char skiplist_subdirs[] = "0123456789abcdef";
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static const std::string RC_FILE_EXT = ".signed";
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namespace llarp
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{
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NodeDB::Entry::Entry(RouterContact value) : rc(std::move(value)), insertedAt(llarp::time_now_ms())
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{}
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static void
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EnsureSkiplist(fs::path nodedbDir)
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{
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if (not fs::exists(nodedbDir))
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{
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// if the old 'netdb' directory exists, move it to this one
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fs::path parent = nodedbDir.parent_path();
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fs::path old = parent / "netdb";
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if (fs::exists(old))
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fs::rename(old, nodedbDir);
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else
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fs::create_directory(nodedbDir);
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}
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if (not fs::is_directory(nodedbDir))
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throw std::runtime_error{fmt::format("nodedb {} is not a directory", nodedbDir)};
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for (const char& ch : skiplist_subdirs)
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{
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// this seems to be a problem on all targets
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// perhaps cpp17::fs is just as screwed-up
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// attempting to create a folder with no name
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// what does this mean...?
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if (!ch)
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continue;
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fs::path sub = nodedbDir / std::string(&ch, 1);
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fs::create_directory(sub);
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}
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}
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constexpr auto FlushInterval = 5min;
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NodeDB::NodeDB(fs::path root, std::function<void(std::function<void()>)> diskCaller)
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: m_Root{std::move(root)}
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, disk(std::move(diskCaller))
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, m_NextFlushAt{time_now_ms() + FlushInterval}
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{
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EnsureSkiplist(m_Root);
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}
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NodeDB::NodeDB() : m_Root{}, disk{[](auto) {}}, m_NextFlushAt{0s}
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{}
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void
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NodeDB::Tick(llarp_time_t now)
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{
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if (m_NextFlushAt == 0s)
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return;
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if (now > m_NextFlushAt)
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{
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m_NextFlushAt += FlushInterval;
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// make copy of all rcs
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std::vector<RouterContact> copy;
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for (const auto& item : m_Entries)
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copy.push_back(item.second.rc);
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// flush them to disk in one big job
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// TODO: split this up? idk maybe some day...
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disk([this, data = std::move(copy)]() {
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for (const auto& rc : data)
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{
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rc.Write(GetPathForPubkey(rc.pubkey));
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}
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});
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}
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}
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fs::path
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NodeDB::GetPathForPubkey(RouterID pubkey) const
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{
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std::string hexString = oxenc::to_hex(pubkey.begin(), pubkey.end());
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std::string skiplistDir;
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const llarp::RouterID r{pubkey};
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std::string fname = r.ToString();
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skiplistDir += hexString[0];
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fname += RC_FILE_EXT;
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return m_Root / skiplistDir / fname;
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}
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void
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NodeDB::LoadFromDisk()
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{
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if (m_Root.empty())
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return;
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for (const char& ch : skiplist_subdirs)
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{
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if (!ch)
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continue;
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std::string p;
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p += ch;
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fs::path sub = m_Root / p;
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llarp::util::IterDir(sub, [&](const fs::path& f) -> bool {
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if (fs::is_regular_file(f) and f.extension() == RC_FILE_EXT)
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{
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RouterContact rc{};
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if (rc.Read(f) and rc.Verify(time_now_ms()))
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m_Entries.emplace(rc.pubkey, rc);
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}
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return true;
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});
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}
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}
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void
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NodeDB::SaveToDisk() const
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{
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if (m_Root.empty())
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return;
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for (const auto& item : m_Entries)
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{
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item.second.rc.Write(GetPathForPubkey(item.first));
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}
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}
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bool
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NodeDB::Has(RouterID pk) const
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{
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util::NullLock lock{m_Access};
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return m_Entries.find(pk) != m_Entries.end();
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}
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std::optional<RouterContact>
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NodeDB::Get(RouterID pk) const
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{
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util::NullLock lock{m_Access};
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const auto itr = m_Entries.find(pk);
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if (itr == m_Entries.end())
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return std::nullopt;
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return itr->second.rc;
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}
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void
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NodeDB::Remove(RouterID pk)
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{
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util::NullLock lock{m_Access};
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m_Entries.erase(pk);
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AsyncRemoveManyFromDisk({pk});
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}
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void
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NodeDB::RemoveStaleRCs(std::unordered_set<RouterID> keep, llarp_time_t cutoff)
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{
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util::NullLock lock{m_Access};
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std::unordered_set<RouterID> removed;
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auto itr = m_Entries.begin();
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while (itr != m_Entries.end())
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{
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if (itr->second.insertedAt < cutoff and keep.count(itr->second.rc.pubkey) == 0)
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{
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removed.insert(itr->second.rc.pubkey);
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itr = m_Entries.erase(itr);
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}
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else
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++itr;
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}
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if (not removed.empty())
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AsyncRemoveManyFromDisk(std::move(removed));
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}
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void
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NodeDB::Put(RouterContact rc)
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{
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util::NullLock lock{m_Access};
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m_Entries.erase(rc.pubkey);
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m_Entries.emplace(rc.pubkey, rc);
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}
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size_t
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NodeDB::NumLoaded() const
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{
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util::NullLock lock{m_Access};
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return m_Entries.size();
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}
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void
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NodeDB::PutIfNewer(RouterContact rc)
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{
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util::NullLock lock{m_Access};
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auto itr = m_Entries.find(rc.pubkey);
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if (itr == m_Entries.end() or itr->second.rc.OtherIsNewer(rc))
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{
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// delete if existing
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if (itr != m_Entries.end())
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m_Entries.erase(itr);
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// add new entry
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m_Entries.emplace(rc.pubkey, rc);
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}
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}
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void
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NodeDB::AsyncRemoveManyFromDisk(std::unordered_set<RouterID> remove) const
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{
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if (m_Root.empty())
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return;
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// build file list
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std::set<fs::path> files;
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for (auto id : remove)
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{
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files.emplace(GetPathForPubkey(std::move(id)));
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}
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// remove them from the disk via the diskio thread
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disk([files]() {
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for (auto fpath : files)
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fs::remove(fpath);
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});
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}
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llarp::RouterContact
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NodeDB::FindClosestTo(llarp::dht::Key_t location) const
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{
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util::NullLock lock{m_Access};
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llarp::RouterContact rc;
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const llarp::dht::XorMetric compare(location);
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VisitAll([&rc, compare](const auto& otherRC) {
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if (rc.pubkey.IsZero())
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{
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rc = otherRC;
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return;
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}
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if (compare(
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llarp::dht::Key_t{otherRC.pubkey.as_array()},
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llarp::dht::Key_t{rc.pubkey.as_array()}))
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rc = otherRC;
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});
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return rc;
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}
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std::vector<RouterContact>
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NodeDB::FindManyClosestTo(llarp::dht::Key_t location, uint32_t numRouters) const
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{
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util::NullLock lock{m_Access};
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std::vector<const RouterContact*> all;
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const auto& entries = m_Entries;
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all.reserve(entries.size());
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for (auto& entry : entries)
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{
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all.push_back(&entry.second.rc);
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}
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auto it_mid = numRouters < all.size() ? all.begin() + numRouters : all.end();
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std::partial_sort(
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all.begin(), it_mid, all.end(), [compare = dht::XorMetric{location}](auto* a, auto* b) {
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return compare(*a, *b);
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});
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std::vector<RouterContact> closest;
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closest.reserve(numRouters);
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for (auto it = all.begin(); it != it_mid; ++it)
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closest.push_back(**it);
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return closest;
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}
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} // namespace llarp
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