mirror of
https://github.com/oxen-io/lokinet.git
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153 lines
3.8 KiB
C++
153 lines
3.8 KiB
C++
#ifndef LLARP_CRYPTO_HPP
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#define LLARP_CRYPTO_HPP
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#include <crypto/constants.hpp>
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#include <crypto/types.hpp>
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#include <util/buffer.hpp>
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#include <absl/base/optimization.h>
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#include <functional>
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#include <cstdint>
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/**
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* crypto.hpp
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*
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* libsodium abstraction layer
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* potentially allow libssl support in the future
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*/
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namespace llarp
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{
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/// library crypto configuration
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struct Crypto
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{
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virtual ~Crypto() = 0;
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/// xchacha symmetric cipher
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virtual bool
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xchacha20(const llarp_buffer_t &, const SharedSecret &,
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const TunnelNonce &) = 0;
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/// xchacha symmetric cipher (multibuffer)
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virtual bool
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xchacha20_alt(const llarp_buffer_t &, const llarp_buffer_t &,
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const SharedSecret &, const byte_t *) = 0;
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/// path dh creator's side
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virtual bool
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dh_client(SharedSecret &, const PubKey &, const SecretKey &,
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const TunnelNonce &) = 0;
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/// path dh relay side
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virtual bool
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dh_server(SharedSecret &, const PubKey &, const SecretKey &,
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const TunnelNonce &) = 0;
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/// transport dh client side
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virtual bool
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transport_dh_client(SharedSecret &, const PubKey &, const SecretKey &,
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const TunnelNonce &) = 0;
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/// transport dh server side
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virtual bool
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transport_dh_server(SharedSecret &, const PubKey &, const SecretKey &,
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const TunnelNonce &) = 0;
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/// blake2b 256 bit
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virtual bool
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shorthash(ShortHash &, const llarp_buffer_t &) = 0;
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/// blake2s 256 bit "hmac" (keyed hash)
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virtual bool
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hmac(byte_t *, const llarp_buffer_t &, const SharedSecret &) = 0;
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/// ed25519 sign
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virtual bool
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sign(Signature &, const SecretKey &, const llarp_buffer_t &) = 0;
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/// ed25519 verify
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virtual bool
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verify(const PubKey &, const llarp_buffer_t &, const Signature &) = 0;
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/// derive sub keys for public keys
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virtual bool
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derive_subkey(PubKey &, const PubKey &, uint64_t) = 0;
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/// derive sub keys for secret keys
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virtual bool
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derive_subkey_secret(SecretKey &, const SecretKey &, uint64_t) = 0;
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/// seed to secretkey
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virtual bool
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seed_to_secretkey(llarp::SecretKey &, const llarp::IdentitySecret &) = 0;
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/// randomize buffer
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virtual void
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randomize(const llarp_buffer_t &) = 0;
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/// randomizer memory
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virtual void
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randbytes(byte_t *, size_t) = 0;
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/// generate signing keypair
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virtual void
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identity_keygen(SecretKey &) = 0;
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/// generate encryption keypair
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virtual void
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encryption_keygen(SecretKey &) = 0;
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/// generate post quantum encrytion key
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virtual void
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pqe_keygen(PQKeyPair &) = 0;
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/// post quantum decrypt (buffer, sharedkey_dst, sec)
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virtual bool
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pqe_decrypt(const PQCipherBlock &, SharedSecret &, const byte_t *) = 0;
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/// post quantum encrypt (buffer, sharedkey_dst, pub)
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virtual bool
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pqe_encrypt(PQCipherBlock &, SharedSecret &, const PQPubKey &) = 0;
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virtual bool
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check_identity_privkey(const SecretKey &) = 0;
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};
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inline Crypto::~Crypto() = default;
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/// return random 64bit unsigned interger
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uint64_t
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randint();
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const byte_t *
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seckey_topublic(const SecretKey &secret);
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const byte_t *
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pq_keypair_to_public(const PQKeyPair &keypair);
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const byte_t *
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pq_keypair_to_secret(const PQKeyPair &keypair);
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struct CryptoManager
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{
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private:
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static Crypto *m_crypto;
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Crypto *m_prevCrypto;
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public:
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CryptoManager(Crypto *crypto) : m_prevCrypto(m_crypto)
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{
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m_crypto = crypto;
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}
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~CryptoManager()
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{
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m_crypto = m_prevCrypto;
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}
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static Crypto *
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instance() ABSL_ATTRIBUTE_RETURNS_NONNULL
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{
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if(ABSL_PREDICT_TRUE(m_crypto))
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{
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return m_crypto;
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}
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assert(false && "Cryptomanager::instance() was undefined");
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abort();
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}
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};
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} // namespace llarp
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#endif
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