lokinet/llarp/crypto/encrypted_frame.cpp

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#include "encrypted_frame.hpp"
#include "crypto.hpp"
#include <llarp/util/logging/logger.hpp>
#include <llarp/util/mem.hpp>
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namespace llarp
{
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bool
EncryptedFrame::DoEncrypt(const SharedSecret& shared, bool noDH)
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{
byte_t* hash = data();
byte_t* noncePtr = hash + SHORTHASHSIZE;
byte_t* pubkey = noncePtr + TUNNONCESIZE;
byte_t* body = pubkey + PUBKEYSIZE;
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auto crypto = CryptoManager::instance();
// if noDH flag, means key exchange has already taken place
// in this case, set pubkey to random noise and choose a
// random nonce here
if (noDH)
{
crypto->randbytes(noncePtr, TUNNONCESIZE);
crypto->randbytes(pubkey, PUBKEYSIZE);
}
TunnelNonce nonce(noncePtr);
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llarp_buffer_t buf;
buf.base = body;
buf.cur = buf.base;
buf.sz = size() - EncryptedFrameOverheadSize;
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// encrypt body
if (!crypto->xchacha20(buf, shared, nonce))
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{
llarp::LogError("encrypt failed");
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return false;
}
// generate message auth
buf.base = noncePtr;
buf.cur = buf.base;
buf.sz = size() - SHORTHASHSIZE;
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if (!crypto->hmac(hash, buf, shared))
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{
llarp::LogError("Failed to generate message auth");
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return false;
}
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return true;
}
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bool
EncryptedFrame::EncryptInPlace(const SecretKey& ourSecretKey, const PubKey& otherPubkey)
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{
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// format of frame is
// <32 bytes keyed hash of following data>
// <32 bytes nonce>
// <32 bytes pubkey>
// <N bytes encrypted payload>
//
byte_t* hash = data();
byte_t* noncePtr = hash + SHORTHASHSIZE;
byte_t* pubkey = noncePtr + TUNNONCESIZE;
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SharedSecret shared;
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auto crypto = CryptoManager::instance();
// set our pubkey
memcpy(pubkey, ourSecretKey.toPublic().data(), PUBKEYSIZE);
// randomize nonce
crypto->randbytes(noncePtr, TUNNONCESIZE);
TunnelNonce nonce(noncePtr);
// derive shared key
if (!crypto->dh_client(shared, otherPubkey, ourSecretKey, nonce))
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{
llarp::LogError("DH failed");
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return false;
}
return DoEncrypt(shared, false);
}
bool
EncryptedFrame::DoDecrypt(const SharedSecret& shared)
{
ShortHash hash(data());
byte_t* noncePtr = data() + SHORTHASHSIZE;
byte_t* body = data() + EncryptedFrameOverheadSize;
TunnelNonce nonce(noncePtr);
auto crypto = CryptoManager::instance();
llarp_buffer_t buf;
buf.base = noncePtr;
buf.cur = buf.base;
buf.sz = size() - SHORTHASHSIZE;
ShortHash digest;
if (!crypto->hmac(digest.data(), buf, shared))
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{
llarp::LogError("Digest failed");
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return false;
}
if (!std::equal(digest.begin(), digest.end(), hash.begin()))
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{
llarp::LogError("message authentication failed");
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return false;
}
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buf.base = body;
buf.cur = body;
buf.sz = size() - EncryptedFrameOverheadSize;
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if (!crypto->xchacha20(buf, shared, nonce))
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{
llarp::LogError("decrypt failed");
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return false;
}
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return true;
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}
bool
EncryptedFrame::DecryptInPlace(const SecretKey& ourSecretKey)
{
// format of frame is
// <32 bytes keyed hash of following data>
// <32 bytes nonce>
// <32 bytes pubkey>
// <N bytes encrypted payload>
//
byte_t* noncePtr = data() + SHORTHASHSIZE;
TunnelNonce nonce(noncePtr);
PubKey otherPubkey(noncePtr + TUNNONCESIZE);
SharedSecret shared;
auto crypto = CryptoManager::instance();
// use dh_server because we are not the creator of this message
if (!crypto->dh_server(shared, otherPubkey, ourSecretKey, nonce))
{
llarp::LogError("DH failed");
return false;
}
return DoDecrypt(shared);
}
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} // namespace llarp