mirror of
https://github.com/oxen-io/lokinet.git
synced 2024-11-07 15:20:31 +00:00
375 lines
9.2 KiB
C++
375 lines
9.2 KiB
C++
#include <service.hpp>
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#include <buffer.hpp>
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#include <fs.hpp>
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#include <ini.hpp>
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namespace llarp
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{
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namespace service
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{
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IntroSet::~IntroSet()
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{
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if(W)
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delete W;
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}
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bool
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IntroSet::DecodeKey(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", A, read, key, buf))
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return false;
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if(llarp_buffer_eq(key, "i"))
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{
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return BEncodeReadList(I, buf);
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}
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if(!BEncodeMaybeReadDictEntry("k", K, 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(!BEncodeMaybeReadDictInt("t", T, read, key, buf))
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return false;
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if(llarp_buffer_eq(key, "w"))
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{
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if(W)
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delete W;
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W = new PoW();
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return W->BDecode(buf);
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}
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if(!BEncodeMaybeReadDictInt("v", version, read, key, buf))
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return false;
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if(!BEncodeMaybeReadDictEntry("z", Z, 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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IntroSet::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(!BEncodeWriteDictEntry("a", A, buf))
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return false;
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// start introduction list
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if(!bencode_write_bytestring(buf, "i", 1))
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return false;
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if(!BEncodeWriteList(I.begin(), I.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(!BEncodeWriteDictEntry("k", K, buf))
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return false;
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// topic tag
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if(topic.ToString().size())
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{
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if(!BEncodeWriteDictEntry("n", topic, buf))
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return false;
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}
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// Timestamp published
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if(!BEncodeWriteDictInt("t", T, 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(W)
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{
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if(!BEncodeWriteDictEntry("w", *W, buf))
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return false;
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}
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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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IntroSet::HasExpiredIntros(llarp_time_t now) const
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{
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for(const auto& i : I)
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if(now >= i.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::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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Introduction::~Introduction()
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{
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}
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bool
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Introduction::DecodeKey(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("k", router, read, key, buf))
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return false;
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if(!BEncodeMaybeReadDictInt("l", latency, read, key, buf))
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return false;
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if(!BEncodeMaybeReadDictEntry("p", pathID, 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(!BEncodeMaybeReadDictInt("x", expiresAt, 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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Introduction::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(!BEncodeWriteDictEntry("k", router, buf))
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return false;
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if(latency)
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{
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if(!BEncodeWriteDictInt("l", latency, buf))
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return false;
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}
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if(!BEncodeWriteDictEntry("p", pathID, 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(!BEncodeWriteDictInt("x", expiresAt, buf))
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return false;
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return bencode_end(buf);
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}
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void
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Introduction::Clear()
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{
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router.Zero();
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pathID.Zero();
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latency = 0;
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expiresAt = 0;
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}
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Identity::~Identity()
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{
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}
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bool
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Identity::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(!BEncodeWriteDictEntry("e", enckey, buf))
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return false;
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if(!BEncodeWriteDictEntry("q", pq, buf))
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return false;
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if(!BEncodeWriteDictEntry("s", signkey, 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("x", vanity, 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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Identity::DecodeKey(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("e", enckey, read, key, buf))
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return false;
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if(llarp_buffer_eq(key, "q"))
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{
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llarp_buffer_t str;
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if(!bencode_read_string(buf, &str))
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return false;
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if(str.sz == 3200 || str.sz == 2818)
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{
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pq = str.base;
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return true;
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}
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else
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return false;
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}
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if(!BEncodeMaybeReadDictEntry("s", signkey, 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("x", vanity, read, key, buf))
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return false;
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return read;
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}
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void
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Identity::RegenerateKeys(llarp::Crypto* crypto)
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{
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crypto->encryption_keygen(enckey);
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crypto->identity_keygen(signkey);
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pub.Update(llarp::seckey_topublic(enckey),
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llarp::seckey_topublic(signkey));
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crypto->pqe_keygen(pq);
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}
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bool
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Identity::KeyExchange(path_dh_func dh, byte_t* result,
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const ServiceInfo& other, const byte_t* N) const
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{
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return dh(result, other.EncryptionPublicKey(), enckey, N);
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}
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bool
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Identity::Sign(llarp::Crypto* c, byte_t* sig, llarp_buffer_t buf) const
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{
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return c->sign(sig, signkey, buf);
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}
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bool
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Identity::EnsureKeys(const std::string& fname, llarp::Crypto* c)
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{
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byte_t tmp[4096];
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auto buf = llarp::StackBuffer< decltype(tmp) >(tmp);
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std::error_code ec;
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// check for file
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if(!fs::exists(fname, ec))
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{
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if(ec)
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{
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llarp::LogError(ec);
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return false;
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}
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// regen and encode
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RegenerateKeys(c);
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if(!BEncode(&buf))
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return false;
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// rewind
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buf.sz = buf.cur - buf.base;
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buf.cur = buf.base;
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// write
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std::ofstream f;
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f.open(fname, std::ios::binary);
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if(!f.is_open())
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return false;
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f.write((char*)buf.cur, buf.sz);
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}
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// read file
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std::ifstream inf(fname, std::ios::binary);
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inf.seekg(0, std::ios::end);
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size_t sz = inf.tellg();
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inf.seekg(0, std::ios::beg);
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if(sz > sizeof(tmp))
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return false;
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// decode
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inf.read((char*)buf.base, sz);
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if(!BDecode(&buf))
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return false;
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const byte_t* ptr = nullptr;
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if(!vanity.IsZero())
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ptr = vanity.data();
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// update pubkeys
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pub.Update(llarp::seckey_topublic(enckey),
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llarp::seckey_topublic(signkey), ptr);
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return true;
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}
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bool
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Identity::SignIntroSet(IntroSet& i, llarp::Crypto* crypto,
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llarp_time_t now) const
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{
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if(i.I.size() == 0)
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return false;
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// set timestamp
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// TODO: round to nearest 1000 ms
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i.T = now;
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// set service info
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i.A = pub;
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// set public encryption key
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i.K = pq_keypair_to_public(pq);
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// zero out signature for signing process
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i.Z.Zero();
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byte_t tmp[MAX_INTROSET_SIZE];
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auto buf = llarp::StackBuffer< decltype(tmp) >(tmp);
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if(!i.BEncode(&buf))
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return false;
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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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return Sign(crypto, i.Z, buf);
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}
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bool
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IntroSet::Verify(llarp::Crypto* crypto, llarp_time_t now) const
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{
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byte_t tmp[MAX_INTROSET_SIZE];
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auto buf = llarp::StackBuffer< decltype(tmp) >(tmp);
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IntroSet 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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// 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(!A.Verify(crypto, buf, Z))
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return false;
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// validate PoW
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if(W && !W->IsValid(crypto->shorthash, now))
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return false;
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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 : I)
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{
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if(intro.expiresAt > now
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&& intro.expiresAt - now > DEFAULT_PATH_LIFETIME)
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{
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if(W && intro.expiresAt - W->extendedLifetime > DEFAULT_PATH_LIFETIME)
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return false;
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else if(W == nullptr)
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{
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llarp::LogWarn("intro has too high expire time");
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return false;
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}
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}
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}
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if(IsExpired(now))
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{
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llarp::LogWarn("introset expired: ", *this);
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return false;
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}
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return true;
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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 t = 0;
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for(const auto& intro : I)
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t = std::max(intro.expiresAt, t);
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return t;
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}
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bool
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Config::Load(const std::string& fname)
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{
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ini::Parser parser(fname);
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for(const auto& sec : parser.top().ordered_sections)
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{
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services.push_back({sec->first, sec->second.values});
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}
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return services.size() > 0;
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}
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} // namespace service
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} // namespace llarp
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