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).
187 lines
5.0 KiB
C++
187 lines
5.0 KiB
C++
#include "identity.hpp"
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#include <llarp/crypto/crypto.hpp>
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#include <llarp/util/fs.hpp>
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#include <sodium/crypto_sign_ed25519.h>
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namespace llarp
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{
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namespace service
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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("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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return bencode_end(buf);
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}
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bool
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Identity::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("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 (not read)
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return bencode_discard(buf);
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return true;
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}
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void
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Identity::Clear()
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{
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signkey.Zero();
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enckey.Zero();
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pq.Zero();
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derivedSignKey.Zero();
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vanity.Zero();
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}
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void
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Identity::RegenerateKeys()
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{
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auto crypto = CryptoManager::instance();
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crypto->identity_keygen(signkey);
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crypto->encryption_keygen(enckey);
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pub.Update(seckey_topublic(signkey), seckey_topublic(enckey));
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crypto->pqe_keygen(pq);
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if (not crypto->derive_subkey_private(derivedSignKey, signkey, 1))
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{
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throw std::runtime_error("failed to derive subkey");
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}
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}
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bool
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Identity::KeyExchange(
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path_dh_func dh,
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SharedSecret& result,
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const ServiceInfo& other,
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const KeyExchangeNonce& 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(Signature& sig, const llarp_buffer_t& buf) const
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{
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return CryptoManager::instance()->sign(sig, signkey, buf);
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}
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void
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Identity::EnsureKeys(fs::path fname, bool needBackup)
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{
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// make sure we are empty
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Clear();
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std::array<byte_t, 4096> tmp;
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llarp_buffer_t buf(tmp);
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// this can throw
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bool exists = fs::exists(fname);
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if (exists and needBackup)
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{
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KeyManager::backupFileByMoving(fname);
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exists = false;
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}
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// check for file
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if (!exists)
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{
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// regen and encode
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RegenerateKeys();
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if (!BEncode(&buf))
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throw std::length_error("failed to encode new identity");
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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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auto optional_f = util::OpenFileStream<std::ofstream>(fname, std::ios::binary);
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if (!optional_f)
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throw std::runtime_error{fmt::format("can not open {}", fname)};
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auto& f = *optional_f;
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if (!f.is_open())
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throw std::runtime_error{fmt::format("did not open {}", fname)};
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f.write((char*)buf.cur, buf.sz);
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}
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if (not fs::is_regular_file(fname))
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{
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throw std::invalid_argument{fmt::format("{} is not a regular file", fname)};
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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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throw std::length_error("service identity too big");
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// decode
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inf.read((char*)buf.base, sz);
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if (!bencode_decode_dict(*this, &buf))
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throw std::length_error("could not decode service identity");
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auto crypto = CryptoManager::instance();
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// ensure that the encryption key is set
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if (enckey.IsZero())
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crypto->encryption_keygen(enckey);
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// also ensure the ntru key is set
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if (pq.IsZero())
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crypto->pqe_keygen(pq);
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std::optional<VanityNonce> van;
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if (!vanity.IsZero())
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van = vanity;
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// update pubkeys
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pub.Update(seckey_topublic(signkey), seckey_topublic(enckey), van);
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if (not crypto->derive_subkey_private(derivedSignKey, signkey, 1))
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{
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throw std::runtime_error("failed to derive subkey");
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}
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}
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std::optional<EncryptedIntroSet>
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Identity::EncryptAndSignIntroSet(const IntroSet& other_i, llarp_time_t now) const
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{
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EncryptedIntroSet encrypted;
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if (other_i.intros.empty())
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return std::nullopt;
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IntroSet i{other_i};
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encrypted.nounce.Randomize();
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// set timestamp
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// TODO: round to nearest 1000 ms
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i.timestampSignedAt = now;
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encrypted.signedAt = now;
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// set service info
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i.addressKeys = pub;
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// set public encryption key
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i.sntrupKey = pq_keypair_to_public(pq);
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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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if (not i.BEncode(&buf))
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return std::nullopt;
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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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const SharedSecret k{i.addressKeys.Addr()};
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CryptoManager::instance()->xchacha20(buf, k, encrypted.nounce);
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encrypted.introsetPayload = buf.copy();
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if (not encrypted.Sign(derivedSignKey))
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return std::nullopt;
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return encrypted;
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}
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} // namespace service
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} // namespace llarp
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