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https://github.com/oxen-io/lokinet.git
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273270916e
This commit reflects changes to clang-format rules. Unfortunately, these rule changes create a massive change to the codebase, which causes an apparent rewrite of git history. Git blame's --ignore-rev flag can be used to ignore this commit when attempting to `git blame` some code.
421 lines
12 KiB
C++
421 lines
12 KiB
C++
#include <exit/exit_messages.hpp>
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#include <crypto/crypto.hpp>
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#include <routing/handler.hpp>
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namespace llarp
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{
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namespace routing
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{
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bool
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ObtainExitMessage::Sign(const llarp::SecretKey& sk)
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{
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std::array<byte_t, 1024> tmp;
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llarp_buffer_t buf(tmp);
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I = seckey_topublic(sk);
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Z.Zero();
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if (!BEncode(&buf))
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{
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return false;
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}
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buf.sz = buf.cur - buf.base;
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return CryptoManager::instance()->sign(Z, sk, buf);
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}
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bool
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ObtainExitMessage::Verify() const
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{
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std::array<byte_t, 1024> tmp;
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llarp_buffer_t buf(tmp);
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ObtainExitMessage copy;
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copy = *this;
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copy.Z.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 buffer
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buf.sz = buf.cur - buf.base;
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return CryptoManager::instance()->verify(I, buf, Z);
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}
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bool
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ObtainExitMessage::BEncode(llarp_buffer_t* buf) const
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{
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if (!bencode_start_dict(buf))
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return false;
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if (!BEncodeWriteDictMsgType(buf, "A", "O"))
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return false;
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if (!BEncodeWriteDictArray("B", B, buf))
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return false;
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if (!BEncodeWriteDictInt("E", E, buf))
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return false;
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if (!BEncodeWriteDictEntry("I", I, buf))
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return false;
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if (!BEncodeWriteDictInt("S", S, buf))
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return false;
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if (!BEncodeWriteDictInt("T", T, buf))
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return false;
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if (!BEncodeWriteDictInt("V", version, buf))
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return false;
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if (!BEncodeWriteDictArray("W", W, buf))
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return false;
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if (!BEncodeWriteDictInt("X", X, buf))
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return false;
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if (!BEncodeWriteDictEntry("Z", Z, 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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ObtainExitMessage::DecodeKey(const llarp_buffer_t& k, llarp_buffer_t* buf)
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{
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bool read = false;
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if (!BEncodeMaybeReadDictList("B", B, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("E", E, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictEntry("I", I, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("S", S, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("T", T, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("V", version, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictList("W", W, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("X", X, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictEntry("Z", Z, read, k, 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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ObtainExitMessage::HandleMessage(IMessageHandler* h, AbstractRouter* r) const
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{
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return h->HandleObtainExitMessage(*this, r);
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}
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bool
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GrantExitMessage::BEncode(llarp_buffer_t* buf) const
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{
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if (!bencode_start_dict(buf))
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return false;
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if (!BEncodeWriteDictMsgType(buf, "A", "G"))
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return false;
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if (!BEncodeWriteDictInt("S", S, buf))
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return false;
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if (!BEncodeWriteDictInt("T", T, buf))
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return false;
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if (!BEncodeWriteDictInt("V", version, buf))
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return false;
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if (!BEncodeWriteDictEntry("Y", Y, buf))
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return false;
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if (!BEncodeWriteDictEntry("Z", Z, 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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GrantExitMessage::DecodeKey(const llarp_buffer_t& k, llarp_buffer_t* buf)
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{
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bool read = false;
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if (!BEncodeMaybeReadDictInt("S", S, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("T", T, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("V", version, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictEntry("Y", Y, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictEntry("Z", Z, read, k, 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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GrantExitMessage::Verify(const llarp::PubKey& pk) const
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{
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std::array<byte_t, 512> tmp;
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llarp_buffer_t buf(tmp);
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GrantExitMessage copy;
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copy = *this;
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copy.Z.Zero();
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if (!copy.BEncode(&buf))
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return false;
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buf.sz = buf.cur - buf.base;
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return CryptoManager::instance()->verify(pk, buf, Z);
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}
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bool
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GrantExitMessage::Sign(const llarp::SecretKey& sk)
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{
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std::array<byte_t, 512> tmp;
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llarp_buffer_t buf(tmp);
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Z.Zero();
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Y.Randomize();
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if (!BEncode(&buf))
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return false;
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buf.sz = buf.cur - buf.base;
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return CryptoManager::instance()->sign(Z, sk, buf);
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}
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bool
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GrantExitMessage::HandleMessage(IMessageHandler* h, AbstractRouter* r) const
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{
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return h->HandleGrantExitMessage(*this, r);
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}
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bool
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RejectExitMessage::BEncode(llarp_buffer_t* buf) const
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{
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if (!bencode_start_dict(buf))
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return false;
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if (!BEncodeWriteDictMsgType(buf, "A", "J"))
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return false;
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if (!BEncodeWriteDictInt("B", B, buf))
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return false;
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if (!BEncodeWriteDictList("R", R, buf))
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return false;
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if (!BEncodeWriteDictInt("S", S, buf))
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return false;
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if (!BEncodeWriteDictInt("T", T, buf))
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return false;
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if (!BEncodeWriteDictInt("V", version, buf))
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return false;
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if (!BEncodeWriteDictEntry("Y", Y, buf))
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return false;
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if (!BEncodeWriteDictEntry("Z", Z, 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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RejectExitMessage::DecodeKey(const llarp_buffer_t& k, llarp_buffer_t* buf)
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{
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bool read = false;
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if (!BEncodeMaybeReadDictInt("B", B, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictList("R", R, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("S", S, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("T", T, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("V", version, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictEntry("Y", Y, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictEntry("Z", Z, read, k, 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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RejectExitMessage::Sign(const llarp::SecretKey& sk)
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{
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std::array<byte_t, 512> tmp;
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llarp_buffer_t buf(tmp);
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Z.Zero();
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Y.Randomize();
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if (!BEncode(&buf))
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return false;
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buf.sz = buf.cur - buf.base;
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return CryptoManager::instance()->sign(Z, sk, buf);
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}
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bool
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RejectExitMessage::Verify(const llarp::PubKey& pk) const
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{
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std::array<byte_t, 512> tmp;
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llarp_buffer_t buf(tmp);
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RejectExitMessage copy;
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copy = *this;
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copy.Z.Zero();
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if (!copy.BEncode(&buf))
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return false;
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buf.sz = buf.cur - buf.base;
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return CryptoManager::instance()->verify(pk, buf, Z);
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}
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bool
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RejectExitMessage::HandleMessage(IMessageHandler* h, AbstractRouter* r) const
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{
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return h->HandleRejectExitMessage(*this, r);
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}
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bool
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UpdateExitMessage::BEncode(llarp_buffer_t* buf) const
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{
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if (!bencode_start_dict(buf))
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return false;
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if (!BEncodeWriteDictMsgType(buf, "A", "V"))
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return false;
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if (!BEncodeWriteDictEntry("P", P, buf))
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return false;
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if (!BEncodeWriteDictInt("S", S, buf))
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return false;
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if (!BEncodeWriteDictInt("T", T, buf))
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return false;
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if (!BEncodeWriteDictInt("V", version, buf))
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return false;
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if (!BEncodeWriteDictEntry("Z", Z, 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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UpdateExitMessage::DecodeKey(const llarp_buffer_t& k, llarp_buffer_t* buf)
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{
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bool read = false;
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if (!BEncodeMaybeReadDictInt("S", S, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("T", T, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("V", version, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictEntry("P", P, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictEntry("Z", Z, read, k, 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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UpdateExitMessage::Verify(const llarp::PubKey& pk) const
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{
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std::array<byte_t, 512> tmp;
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llarp_buffer_t buf(tmp);
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UpdateExitMessage copy;
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copy = *this;
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copy.Z.Zero();
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if (!copy.BEncode(&buf))
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return false;
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buf.sz = buf.cur - buf.base;
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return CryptoManager::instance()->verify(pk, buf, Z);
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}
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bool
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UpdateExitMessage::Sign(const llarp::SecretKey& sk)
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{
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std::array<byte_t, 512> tmp;
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llarp_buffer_t buf(tmp);
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Y.Randomize();
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if (!BEncode(&buf))
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return false;
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buf.sz = buf.cur - buf.base;
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return CryptoManager::instance()->sign(Z, sk, buf);
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}
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bool
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UpdateExitMessage::HandleMessage(IMessageHandler* h, AbstractRouter* r) const
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{
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return h->HandleUpdateExitMessage(*this, r);
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}
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bool
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UpdateExitVerifyMessage::BEncode(llarp_buffer_t* buf) const
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{
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if (!bencode_start_dict(buf))
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return false;
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if (!BEncodeWriteDictMsgType(buf, "A", "V"))
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return false;
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if (!BEncodeWriteDictInt("S", S, buf))
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return false;
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if (!BEncodeWriteDictInt("T", T, buf))
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return false;
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if (!BEncodeWriteDictInt("V", version, 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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UpdateExitVerifyMessage::DecodeKey(const llarp_buffer_t& k, llarp_buffer_t* buf)
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{
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bool read = false;
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if (!BEncodeMaybeReadDictInt("S", S, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("T", T, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("V", version, read, k, 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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UpdateExitVerifyMessage::HandleMessage(IMessageHandler* h, AbstractRouter* r) const
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{
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return h->HandleUpdateExitVerifyMessage(*this, r);
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}
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bool
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CloseExitMessage::BEncode(llarp_buffer_t* buf) const
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{
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if (!bencode_start_dict(buf))
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return false;
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if (!BEncodeWriteDictMsgType(buf, "A", "C"))
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return false;
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if (!BEncodeWriteDictInt("S", S, buf))
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return false;
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if (!BEncodeWriteDictInt("V", version, buf))
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return false;
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if (!BEncodeWriteDictEntry("Y", Y, buf))
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return false;
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if (!BEncodeWriteDictEntry("Z", Z, 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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CloseExitMessage::DecodeKey(const llarp_buffer_t& k, llarp_buffer_t* buf)
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{
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bool read = false;
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if (!BEncodeMaybeReadDictInt("S", S, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictInt("V", version, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictEntry("Y", Y, read, k, buf))
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return false;
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if (!BEncodeMaybeReadDictEntry("Z", Z, read, k, 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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CloseExitMessage::Verify(const llarp::PubKey& pk) const
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{
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std::array<byte_t, 512> tmp;
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llarp_buffer_t buf(tmp);
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CloseExitMessage copy;
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copy = *this;
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copy.Z.Zero();
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if (!copy.BEncode(&buf))
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return false;
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buf.sz = buf.cur - buf.base;
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return CryptoManager::instance()->verify(pk, buf, Z);
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}
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bool
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CloseExitMessage::Sign(const llarp::SecretKey& sk)
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{
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std::array<byte_t, 512> tmp;
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llarp_buffer_t buf(tmp);
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Z.Zero();
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Y.Randomize();
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if (!BEncode(&buf))
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return false;
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buf.sz = buf.cur - buf.base;
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return CryptoManager::instance()->sign(Z, sk, buf);
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}
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bool
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CloseExitMessage::HandleMessage(IMessageHandler* h, AbstractRouter* r) const
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{
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return h->HandleCloseExitMessage(*this, r);
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}
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} // namespace routing
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} // namespace llarp
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