mirror of
https://github.com/oxen-io/lokinet.git
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272 lines
7.6 KiB
C++
272 lines
7.6 KiB
C++
#include <crypto/crypto_libsodium.hpp>
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#include <sodium/crypto_generichash.h>
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#include <sodium/crypto_sign.h>
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#include <sodium/crypto_scalarmult.h>
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#include <sodium/crypto_stream_xchacha20.h>
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#include <util/mem.hpp>
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#include <assert.h>
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extern "C"
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{
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extern int
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sodium_init(void);
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}
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namespace llarp
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{
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namespace sodium
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{
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static bool
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dh(llarp::SharedSecret &out, const PubKey &client_pk,
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const PubKey &server_pk, const uint8_t *themPub, const SecretKey &usSec)
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{
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llarp::SharedSecret shared;
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crypto_generichash_state h;
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if(crypto_scalarmult_curve25519(shared.data(), usSec.data(), themPub))
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{
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return false;
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}
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crypto_generichash_blake2b_init(&h, nullptr, 0U, shared.size());
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crypto_generichash_blake2b_update(&h, client_pk.data(), 32);
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crypto_generichash_blake2b_update(&h, server_pk.data(), 32);
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crypto_generichash_blake2b_update(&h, shared.data(), 32);
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crypto_generichash_blake2b_final(&h, out.data(), shared.size());
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return true;
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}
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static bool
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dh_client_priv(llarp::SharedSecret &shared, const PubKey &pk,
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const SecretKey &sk, const TunnelNonce &n)
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{
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llarp::SharedSecret dh_result;
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if(dh(dh_result, sk.toPublic(), pk, pk.data(), sk))
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{
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return crypto_generichash_blake2b(shared.data(), 32, n.data(), 32,
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dh_result.data(), 32)
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!= -1;
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}
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llarp::LogWarn("crypto::dh_client - dh failed");
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return false;
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}
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static bool
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dh_server_priv(llarp::SharedSecret &shared, const PubKey &pk,
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const SecretKey &sk, const TunnelNonce &n)
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{
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llarp::SharedSecret dh_result;
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if(dh(dh_result, pk, sk.toPublic(), pk.data(), sk))
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{
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return crypto_generichash_blake2b(shared.data(), 32, n.data(), 32,
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dh_result.data(), 32)
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!= -1;
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}
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llarp::LogWarn("crypto::dh_server - dh failed");
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return false;
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}
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CryptoLibSodium::CryptoLibSodium()
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{
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if(sodium_init() == -1)
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{
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throw std::runtime_error("sodium_init() returned -1");
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}
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char *avx2 = std::getenv("AVX2_FORCE_DISABLE");
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if(avx2 && std::string(avx2) == "1")
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{
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ntru_init(1);
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}
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else
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{
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ntru_init(0);
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}
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int seed = 0;
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this->randbytes(&seed, sizeof(seed));
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srand(seed);
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}
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bool
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CryptoLibSodium::xchacha20(const llarp_buffer_t &buff,
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const SharedSecret &k, const TunnelNonce &n)
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{
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return crypto_stream_xchacha20_xor(buff.base, buff.base, buff.sz,
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n.data(), k.data())
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== 0;
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}
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bool
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CryptoLibSodium::xchacha20_alt(const llarp_buffer_t &out,
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const llarp_buffer_t &in,
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const SharedSecret &k, const byte_t *n)
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{
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if(in.sz > out.sz)
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return false;
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return crypto_stream_xchacha20_xor(out.base, in.base, in.sz, n, k.data())
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== 0;
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}
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bool
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CryptoLibSodium::dh_client(llarp::SharedSecret &shared, const PubKey &pk,
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const SecretKey &sk, const TunnelNonce &n)
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{
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return dh_client_priv(shared, pk, sk, n);
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}
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/// path dh relay side
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bool
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CryptoLibSodium::dh_server(llarp::SharedSecret &shared, const PubKey &pk,
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const SecretKey &sk, const TunnelNonce &n)
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{
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return dh_server_priv(shared, pk, sk, n);
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}
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/// transport dh client side
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bool
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CryptoLibSodium::transport_dh_client(llarp::SharedSecret &shared,
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const PubKey &pk, const SecretKey &sk,
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const TunnelNonce &n)
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{
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return dh_client_priv(shared, pk, sk, n);
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}
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/// transport dh server side
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bool
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CryptoLibSodium::transport_dh_server(llarp::SharedSecret &shared,
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const PubKey &pk, const SecretKey &sk,
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const TunnelNonce &n)
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{
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return dh_server_priv(shared, pk, sk, n);
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}
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bool
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CryptoLibSodium::hash(uint8_t *result, const llarp_buffer_t &buff)
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{
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return crypto_generichash_blake2b(result, HASHSIZE, buff.base, buff.sz,
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nullptr, 0)
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!= -1;
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}
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bool
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CryptoLibSodium::shorthash(ShortHash &result, const llarp_buffer_t &buff)
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{
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return crypto_generichash_blake2b(result.data(), ShortHash::SIZE,
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buff.base, buff.sz, nullptr, 0)
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!= -1;
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}
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bool
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CryptoLibSodium::hmac(byte_t *result, const llarp_buffer_t &buff,
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const SharedSecret &secret)
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{
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return crypto_generichash_blake2b(result, HMACSIZE, buff.base, buff.sz,
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secret.data(), HMACSECSIZE)
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!= -1;
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}
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bool
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CryptoLibSodium::sign(Signature &result, const SecretKey &secret,
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const llarp_buffer_t &buff)
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{
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int rc = crypto_sign_detached(result.data(), nullptr, buff.base, buff.sz,
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secret.data());
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return rc != -1;
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}
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bool
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CryptoLibSodium::verify(const PubKey &pub, const llarp_buffer_t &buff,
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const Signature &sig)
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{
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int rc = crypto_sign_verify_detached(sig.data(), buff.base, buff.sz,
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pub.data());
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return rc != -1;
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}
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bool
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CryptoLibSodium::seed_to_secretkey(llarp::SecretKey &secret,
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const llarp::IdentitySecret &seed)
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{
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byte_t pk[crypto_sign_ed25519_PUBLICKEYBYTES];
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return crypto_sign_ed25519_seed_keypair(pk, secret.data(), seed.data())
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!= -1;
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}
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void
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CryptoLibSodium::randomize(const llarp_buffer_t &buff)
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{
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randombytes((unsigned char *)buff.base, buff.sz);
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}
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void
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CryptoLibSodium::randbytes(void *ptr, size_t sz)
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{
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randombytes((unsigned char *)ptr, sz);
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}
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void
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CryptoLibSodium::identity_keygen(llarp::SecretKey &keys)
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{
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byte_t *d = keys.data();
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crypto_sign_keypair(d + 32, d);
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}
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void
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CryptoLibSodium::encryption_keygen(llarp::SecretKey &keys)
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{
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auto d = keys.data();
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randombytes(d, 32);
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crypto_scalarmult_curve25519_base(d + 32, d);
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}
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bool
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CryptoLibSodium::pqe_encrypt(PQCipherBlock &ciphertext,
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SharedSecret &sharedkey,
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const PQPubKey &pubkey)
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{
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return crypto_kem_enc(ciphertext.data(), sharedkey.data(), pubkey.data())
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!= -1;
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}
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bool
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CryptoLibSodium::pqe_decrypt(const PQCipherBlock &ciphertext,
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SharedSecret &sharedkey,
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const byte_t *secretkey)
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{
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return crypto_kem_dec(sharedkey.data(), ciphertext.data(), secretkey)
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!= -1;
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}
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void
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CryptoLibSodium::pqe_keygen(PQKeyPair &keypair)
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{
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auto d = keypair.data();
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crypto_kem_keypair(d + PQ_SECRETKEYSIZE, d);
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}
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} // namespace sodium
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const byte_t *
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seckey_topublic(const SecretKey &sec)
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{
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return sec.data() + 32;
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}
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const byte_t *
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pq_keypair_to_public(const PQKeyPair &k)
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{
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return k.data() + PQ_SECRETKEYSIZE;
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}
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const byte_t *
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pq_keypair_to_secret(const PQKeyPair &k)
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{
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return k.data();
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}
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uint64_t
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randint()
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{
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uint64_t i;
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randombytes((byte_t *)&i, sizeof(i));
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return i;
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}
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} // namespace llarp
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