mirror of
https://github.com/oxen-io/lokinet.git
synced 2024-11-19 09:25:28 +00:00
8dd1358cc6
* introset path haodver tweaks * improve warn/error messages to convey more information * dont block on queue insertion * reset convotag on decrypt/verify fail * add multiple ready hooks on outbound context * lookup introsets from close routers on dht * continue to tick dead sessions so they expire their paths * introset spacing * reduce lns lookup diversity requirement for speed * add a function to send reset convotag message * only have 1 outbound context at a time
453 lines
11 KiB
C++
453 lines
11 KiB
C++
#include "intro_set.hpp"
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#include <llarp/crypto/crypto.hpp>
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#include <llarp/path/path.hpp>
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#include <oxenmq/bt_serialize.h>
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namespace llarp::service
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{
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util::StatusObject
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EncryptedIntroSet::ExtractStatus() const
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{
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const auto sz = introsetPayload.size();
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return {
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{"location", derivedSigningKey.ToString()}, {"signedAt", to_json(signedAt)}, {"size", sz}};
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}
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bool
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EncryptedIntroSet::BEncode(llarp_buffer_t* buf) const
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{
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if (not bencode_start_dict(buf))
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return false;
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if (not BEncodeWriteDictEntry("d", derivedSigningKey, buf))
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return false;
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if (not BEncodeWriteDictEntry("n", nounce, buf))
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return false;
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if (not BEncodeWriteDictInt("s", signedAt.count(), buf))
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return false;
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if (not bencode_write_bytestring(buf, "x", 1))
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return false;
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if (not bencode_write_bytestring(buf, introsetPayload.data(), introsetPayload.size()))
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return false;
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if (not BEncodeWriteDictEntry("z", sig, buf))
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return false;
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return bencode_end(buf);
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}
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bool
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EncryptedIntroSet::DecodeKey(const llarp_buffer_t& key, llarp_buffer_t* buf)
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{
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bool read = false;
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if (key == "x")
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{
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llarp_buffer_t strbuf;
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if (not bencode_read_string(buf, &strbuf))
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return false;
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if (strbuf.sz > MAX_INTROSET_SIZE)
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return false;
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introsetPayload.resize(strbuf.sz);
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std::copy_n(strbuf.base, strbuf.sz, introsetPayload.data());
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return true;
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}
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if (not BEncodeMaybeReadDictEntry("d", derivedSigningKey, read, key, buf))
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return false;
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if (not BEncodeMaybeReadDictEntry("n", nounce, read, key, buf))
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return false;
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if (not BEncodeMaybeReadDictInt("s", signedAt, read, key, buf))
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return false;
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if (not BEncodeMaybeReadDictEntry("z", sig, read, key, buf))
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return false;
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return read;
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}
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bool
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EncryptedIntroSet::OtherIsNewer(const EncryptedIntroSet& other) const
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{
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return signedAt < other.signedAt;
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}
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std::ostream&
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EncryptedIntroSet::print(std::ostream& out, int levels, int spaces) const
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{
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Printer printer(out, levels, spaces);
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printer.printAttribute("d", derivedSigningKey);
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printer.printAttribute("n", nounce);
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printer.printAttribute("s", signedAt.count());
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printer.printAttribute("x", "[" + std::to_string(introsetPayload.size()) + " bytes]");
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printer.printAttribute("z", sig);
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return out;
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}
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std::optional<IntroSet>
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EncryptedIntroSet::MaybeDecrypt(const PubKey& root) const
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{
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SharedSecret k(root);
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IntroSet i;
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std::vector<byte_t> payload = introsetPayload;
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llarp_buffer_t buf(payload);
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CryptoManager::instance()->xchacha20(buf, k, nounce);
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if (not i.BDecode(&buf))
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return {};
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return i;
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}
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bool
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EncryptedIntroSet::IsExpired(llarp_time_t now) const
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{
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return now >= signedAt + path::default_lifetime;
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}
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bool
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EncryptedIntroSet::Sign(const PrivateKey& k)
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{
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signedAt = llarp::time_now_ms();
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if (not k.toPublic(derivedSigningKey))
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return false;
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sig.Zero();
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std::array<byte_t, MAX_INTROSET_SIZE + 128> tmp;
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llarp_buffer_t buf(tmp);
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if (not BEncode(&buf))
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return false;
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buf.sz = buf.cur - buf.base;
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buf.cur = buf.base;
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if (not CryptoManager::instance()->sign(sig, k, buf))
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return false;
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LogDebug("signed encrypted introset: ", *this);
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return true;
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}
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bool
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EncryptedIntroSet::Verify(llarp_time_t now) const
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{
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if (IsExpired(now))
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return false;
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std::array<byte_t, MAX_INTROSET_SIZE + 128> tmp;
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llarp_buffer_t buf(tmp);
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EncryptedIntroSet copy(*this);
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copy.sig.Zero();
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if (not copy.BEncode(&buf))
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return false;
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LogDebug("verify encrypted introset: ", copy, " sig = ", sig);
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buf.sz = buf.cur - buf.base;
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buf.cur = buf.base;
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return CryptoManager::instance()->verify(derivedSigningKey, buf, sig);
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}
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util::StatusObject
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IntroSet::ExtractStatus() const
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{
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util::StatusObject obj{{"published", to_json(timestampSignedAt)}};
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std::vector<util::StatusObject> introsObjs;
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std::transform(
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intros.begin(),
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intros.end(),
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std::back_inserter(introsObjs),
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[](const auto& intro) -> util::StatusObject { return intro.ExtractStatus(); });
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obj["intros"] = introsObjs;
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if (!topic.IsZero())
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obj["topic"] = topic.ToString();
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std::vector<util::StatusObject> protocols;
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std::transform(
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supportedProtocols.begin(),
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supportedProtocols.end(),
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std::back_inserter(protocols),
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[](const auto& proto) -> util::StatusObject {
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std::stringstream ss;
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ss << proto;
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return ss.str();
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});
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obj["protos"] = protocols;
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std::vector<util::StatusObject> ranges;
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std::transform(
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ownedRanges.begin(),
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ownedRanges.end(),
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std::back_inserter(ranges),
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[](const auto& range) -> util::StatusObject { return range.ToString(); });
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obj["advertisedRanges"] = ranges;
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if (exitTrafficPolicy)
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obj["exitPolicy"] = exitTrafficPolicy->ExtractStatus();
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return obj;
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}
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bool
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IntroSet::DecodeKey(const llarp_buffer_t& key, llarp_buffer_t* buf)
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{
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bool read = false;
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if (!BEncodeMaybeReadDictEntry("a", addressKeys, read, key, buf))
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return false;
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if (key == "e")
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{
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net::TrafficPolicy policy;
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if (not policy.BDecode(buf))
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return false;
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exitTrafficPolicy = policy;
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return true;
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}
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if (key == "i")
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{
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return BEncodeReadList(intros, buf);
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}
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if (!BEncodeMaybeReadDictEntry("k", sntrupKey, read, key, buf))
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return false;
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if (!BEncodeMaybeReadDictEntry("n", topic, read, key, buf))
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return false;
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if (key == "p")
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{
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return bencode_read_list(
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[&](llarp_buffer_t* buf, bool more) {
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if (more)
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{
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uint64_t protoval;
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if (not bencode_read_integer(buf, &protoval))
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return false;
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supportedProtocols.emplace_back(static_cast<ProtocolType>(protoval));
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}
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return true;
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},
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buf);
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}
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if (key == "r")
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{
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return BEncodeReadSet(ownedRanges, buf);
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}
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if (key == "s")
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{
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byte_t* begin = buf->cur;
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if (not bencode_discard(buf))
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return false;
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byte_t* end = buf->cur;
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std::string_view srvString(
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reinterpret_cast<const char*>(begin), static_cast<size_t>(end - begin));
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try
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{
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oxenmq::bt_deserialize(srvString, SRVs);
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}
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catch (const oxenmq::bt_deserialize_invalid& err)
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{
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LogError("Error decoding SRV records from IntroSet: ", err.what());
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return false;
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}
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read = true;
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}
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if (!BEncodeMaybeReadDictInt("t", timestampSignedAt, read, key, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("v", version, read, key, buf))
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return false;
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if (!BEncodeMaybeReadDictEntry("z", signature, read, key, buf))
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return false;
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return read or bencode_discard(buf);
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}
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bool
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IntroSet::BEncode(llarp_buffer_t* buf) const
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{
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if (not bencode_start_dict(buf))
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return false;
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if (not BEncodeWriteDictEntry("a", addressKeys, buf))
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return false;
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// exit policy if applicable
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if (exitTrafficPolicy)
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{
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if (not BEncodeWriteDictEntry("e", *exitTrafficPolicy, buf))
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return false;
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}
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// start introduction list
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if (not bencode_write_bytestring(buf, "i", 1))
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return false;
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if (not BEncodeWriteList(intros.begin(), intros.end(), buf))
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return false;
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// end introduction list
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// pq pubkey
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if (not BEncodeWriteDictEntry("k", sntrupKey, buf))
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return false;
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// topic tag
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if (not topic.ToString().empty())
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{
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if (not BEncodeWriteDictEntry("n", topic, buf))
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return false;
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}
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// supported ethertypes
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if (not supportedProtocols.empty())
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{
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if (not bencode_write_bytestring(buf, "p", 1))
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return false;
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if (not bencode_start_list(buf))
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return false;
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for (const auto& proto : supportedProtocols)
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{
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if (not bencode_write_uint64(buf, static_cast<uint64_t>(proto)))
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return false;
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}
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if (not bencode_end(buf))
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return false;
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}
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// owned ranges
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if (not ownedRanges.empty())
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{
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if (not bencode_write_bytestring(buf, "r", 1))
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return false;
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if (not BEncodeWriteSet(ownedRanges, buf))
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return false;
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}
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// srv records
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if (not SRVs.empty())
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{
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std::string serial = oxenmq::bt_serialize(SRVs);
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if (!bencode_write_bytestring(buf, "s", 1))
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return false;
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if (!buf->write(serial.begin(), serial.end()))
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return false;
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}
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// timestamp
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if (!BEncodeWriteDictInt("t", timestampSignedAt.count(), buf))
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return false;
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// write version
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if (!BEncodeWriteDictInt("v", version, buf))
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return false;
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if (!BEncodeWriteDictEntry("z", signature, buf))
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return false;
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return bencode_end(buf);
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}
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bool
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IntroSet::HasExpiredIntros(llarp_time_t now) const
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{
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for (const auto& intro : intros)
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if (now >= intro.expiresAt)
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return true;
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return false;
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}
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bool
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IntroSet::HasStaleIntros(llarp_time_t now, llarp_time_t delta) const
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{
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for (const auto& intro : intros)
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if (intro.ExpiresSoon(now, delta))
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return true;
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return false;
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}
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bool
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IntroSet::IsExpired(llarp_time_t now) const
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{
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return GetNewestIntroExpiration() < now;
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}
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std::vector<llarp::dns::SRVData>
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IntroSet::GetMatchingSRVRecords(std::string_view service_proto) const
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{
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std::vector<llarp::dns::SRVData> records;
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for (const auto& tuple : SRVs)
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{
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if (std::get<0>(tuple) == service_proto)
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{
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records.push_back(llarp::dns::SRVData::fromTuple(tuple));
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}
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}
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return records;
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}
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bool
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IntroSet::Verify(llarp_time_t now) const
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{
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std::array<byte_t, MAX_INTROSET_SIZE> tmp;
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llarp_buffer_t buf{tmp};
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IntroSet copy;
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copy = *this;
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copy.signature.Zero();
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if (!copy.BEncode(&buf))
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{
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return false;
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}
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// rewind and resize buffer
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buf.sz = buf.cur - buf.base;
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buf.cur = buf.base;
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if (!addressKeys.Verify(buf, signature))
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{
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return false;
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}
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// valid timestamps
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// add max clock skew
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now += MAX_INTROSET_TIME_DELTA;
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for (const auto& intro : intros)
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{
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if (intro.expiresAt > now && intro.expiresAt - now > path::default_lifetime)
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{
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return false;
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}
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}
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return not IsExpired(now);
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}
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llarp_time_t
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IntroSet::GetNewestIntroExpiration() const
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{
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llarp_time_t maxTime = 0s;
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for (const auto& intro : intros)
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maxTime = std::max(intro.expiresAt, maxTime);
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return maxTime;
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}
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std::ostream&
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IntroSet::print(std::ostream& stream, int level, int spaces) const
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{
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Printer printer(stream, level, spaces);
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printer.printAttribute("addressKeys", addressKeys);
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printer.printAttribute("intros", intros);
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printer.printAttribute("sntrupKey", sntrupKey);
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std::string _topic = topic.ToString();
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if (!_topic.empty())
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{
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printer.printAttribute("topic", _topic);
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}
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else
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{
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printer.printAttribute("topic", topic);
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}
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printer.printAttribute("signedAt", timestampSignedAt.count());
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printer.printAttribute("version", version);
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printer.printAttribute("sig", signature);
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return stream;
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}
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} // namespace llarp::service
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