Comment some code
This commit is contained in:
@@ -63,17 +63,26 @@ namespace ColumnLynx::Net::TCP {
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}
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}
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// Starts the TCP Client and initiaties the handshake
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void start();
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// Sends a TCP message to the server
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void sendMessage(ClientMessageType type, const std::string& data = "");
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// Attempt to gracefully disconnect from the server
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void disconnect(bool echo = true);
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// Get the handshake status
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bool isHandshakeComplete() const;
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// Get the connection status
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bool isConnected() const;
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private:
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// Start the heartbeat routine
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void mStartHeartbeat();
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// Handle an incoming TCP message
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void mHandleMessage(ServerMessageType type, const std::string& data);
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// TODO: Move ptrs to smart ptrs
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bool mConnected = false;
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bool mHandshakeComplete = false;
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tcp::resolver mResolver;
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@@ -25,12 +25,17 @@ namespace ColumnLynx::Net::UDP {
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mStartReceive();
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}
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// Start the UDP client
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void start();
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// Send a UDP message
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void sendMessage(const std::string& data = "");
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// Stop the UDP client
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void stop();
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private:
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// Start the UDP listener routine
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void mStartReceive();
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// Handle an incoming UDP message
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void mHandlePacket(std::size_t bytes);
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asio::ip::udp::socket mSocket;
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@@ -35,12 +35,14 @@ namespace ColumnLynx::Utils {
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public:
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LibSodiumWrapper();
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// These are pretty self-explanatory
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uint8_t* getPublicKey();
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uint8_t* getPrivateKey();
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uint8_t* getXPublicKey() { return mXPublicKey.data(); }
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uint8_t* getXPrivateKey() { return mXPrivateKey.data(); }
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// Dangerous!
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// Set the Asymmetric signing keypair. This also regenerates the corresponding encryption keypair; Dangerous!
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void setKeys(PublicKey pk, PrivateKey sk) {
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mPublicKey = pk;
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mPrivateKey = sk;
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@@ -55,17 +57,13 @@ namespace ColumnLynx::Utils {
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// Generates a random 256-bit (32-byte) array
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static std::array<uint8_t, 32> generateRandom256Bit();
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// Sign a message with the stored private key
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static inline Signature signMessage(const uint8_t* msg, size_t len, const PrivateKey& sk) {
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Signature sig{};
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crypto_sign_detached(sig.data(), nullptr, msg, len, sk.data());
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return sig;
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}
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static inline bool verifyMessage(const uint8_t* msg, size_t len,
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const Signature& sig, const PublicKey& pk) {
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return crypto_sign_verify_detached(sig.data(), msg, len, pk.data()) == 0;
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}
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// Overloads for std::string / std::array
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static inline Signature signMessage(const std::string& msg, const PrivateKey& sk) {
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return signMessage(reinterpret_cast<const uint8_t*>(msg.data()), msg.size(), sk);
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@@ -82,6 +80,11 @@ namespace ColumnLynx::Utils {
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return sig;
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}
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// Verify a message with a given public key
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static inline bool verifyMessage(const uint8_t* msg, size_t len, const Signature& sig, const PublicKey& pk) {
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return crypto_sign_verify_detached(sig.data(), msg, len, pk.data()) == 0;
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}
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static inline bool verifyMessage(const std::string& msg, const Signature& sig, const PublicKey& pk) {
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return verifyMessage(reinterpret_cast<const uint8_t*>(msg.data()), msg.size(), sig, pk);
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}
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@@ -96,7 +99,7 @@ namespace ColumnLynx::Utils {
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return crypto_sign_verify_detached(sig.data(), msg, len, pk_raw) == 0;
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}
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// Encrypt with ChaCha20-Poly1305 (returns ciphertext as bytes)
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// Encrypt symmetrically with ChaCha20-Poly1305; returns ciphertext as bytes
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static inline std::vector<uint8_t> encryptMessage(
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const uint8_t* plaintext, size_t len,
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const SymmetricKey& key, const Nonce& nonce,
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@@ -119,7 +122,7 @@ namespace ColumnLynx::Utils {
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return ciphertext;
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}
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// Decrypt with ChaCha20-Poly1305 (returns plaintext as bytes)
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// Decrypt symmetrically with ChaCha20-Poly1305; Returns plaintext as bytes
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static inline std::vector<uint8_t> decryptMessage(
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const uint8_t* ciphertext, size_t len,
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const SymmetricKey& key, const Nonce& nonce,
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@@ -145,12 +148,14 @@ namespace ColumnLynx::Utils {
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return plaintext;
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}
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// Returns a random nonce
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static inline Nonce generateNonce() {
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Nonce n{};
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randombytes_buf(n.data(), n.size());
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return n;
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}
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// Encrypt message asymmetrically; Returns ciphertext as bytes
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static inline std::vector<uint8_t> encryptAsymmetric(
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const uint8_t* plaintext, size_t len,
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const AsymNonce& nonce,
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@@ -171,6 +176,7 @@ namespace ColumnLynx::Utils {
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return ciphertext;
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}
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// Decrypt message asymmetrically; Returns plaintext as bytes
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static inline std::vector<uint8_t> decryptAsymmetric(
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const uint8_t* ciphertext, size_t len,
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const AsymNonce& nonce,
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@@ -194,6 +200,7 @@ namespace ColumnLynx::Utils {
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return plaintext;
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}
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// Verify a public key (certificate) against system-installed CAs
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static inline bool verifyCertificateWithSystemCAs(const std::vector<uint8_t>& cert_der) {
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// Parse DER-encoded certificate
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const unsigned char* p = cert_der.data();
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@@ -235,6 +242,7 @@ namespace ColumnLynx::Utils {
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return result == 1;
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}
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// Extract the hostnames (Subject Alternative Names and Common Names) out of a public key (certificate)
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static inline std::vector<std::string> getCertificateHostname(const std::vector<uint8_t>& cert_der) {
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std::vector<std::string> names;
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@@ -14,16 +14,16 @@
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namespace ColumnLynx::Net {
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struct SessionState {
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SymmetricKey aesKey; // Immutable after creation
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SymmetricKey aesKey; // Agreed-upon AES-256 kes for that session; Immutable after creation
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std::atomic<uint64_t> send_ctr{0}; // Per-direction counters
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std::atomic<uint64_t> recv_ctr{0};
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asio::ip::udp::endpoint udpEndpoint;
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std::atomic<uint64_t> sendCounter{0};
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std::chrono::steady_clock::time_point created = std::chrono::steady_clock::now();
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std::chrono::steady_clock::time_point expires{};
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uint32_t clientTunIP;
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uint32_t serverTunIP;
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uint64_t sessionID;
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std::atomic<uint64_t> recv_ctr{0}; // Per-direction counters
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asio::ip::udp::endpoint udpEndpoint; // Deducted IP + Port of that session client
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std::atomic<uint64_t> sendCounter{0}; // Counter of sent messages
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std::chrono::steady_clock::time_point created = std::chrono::steady_clock::now(); // Time created
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std::chrono::steady_clock::time_point expires{}; // Time of expiry
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uint32_t clientTunIP; // Assigned IP
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uint32_t serverTunIP; // Server IP
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uint64_t sessionID; // Session ID
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Nonce base_nonce{};
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~SessionState() { sodium_memzero(aesKey.data(), aesKey.size()); }
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@@ -36,6 +36,7 @@ namespace ColumnLynx::Net {
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expires = created + ttl;
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}
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// Set the UDP endpoint
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void setUDPEndpoint(const asio::ip::udp::endpoint& ep) {
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udpEndpoint = ep;
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}
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@@ -43,28 +44,31 @@ namespace ColumnLynx::Net {
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class SessionRegistry {
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public:
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// Return a reference to the Session Registry instance
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static SessionRegistry& getInstance() { static SessionRegistry instance; return instance; }
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// Insert or replace
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// Insert or replace a session entry
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void put(uint64_t sessionID, std::shared_ptr<SessionState> state) {
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std::unique_lock lock(mMutex);
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mSessions[sessionID] = std::move(state);
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mIPSessions[mSessions[sessionID]->clientTunIP] = mSessions[sessionID];
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}
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// Lookup
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// Lookup a session entry by session ID
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std::shared_ptr<const SessionState> get(uint64_t sessionID) const {
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std::shared_lock lock(mMutex);
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auto it = mSessions.find(sessionID);
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return (it == mSessions.end()) ? nullptr : it->second;
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}
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// Lookup a session entry by IPv4
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std::shared_ptr<const SessionState> getByIP(uint32_t ip) const {
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std::shared_lock lock(mMutex);
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auto it = mIPSessions.find(ip);
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return (it == mIPSessions.end()) ? nullptr : it->second;
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}
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// Get a snapshot of the Session Registry
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std::unordered_map<uint64_t, std::shared_ptr<SessionState>> snapshot() const {
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std::unordered_map<uint64_t, std::shared_ptr<SessionState>> snap;
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std::shared_lock lock(mMutex);
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@@ -72,7 +76,7 @@ namespace ColumnLynx::Net {
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return snap;
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}
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// Remove
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// Remove a session by ID
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void erase(uint64_t sessionID) {
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std::unique_lock lock(mMutex);
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mSessions.erase(sessionID);
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@@ -99,6 +103,7 @@ namespace ColumnLynx::Net {
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}
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}
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// Get the number of registered sessions
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int size() const {
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std::shared_lock lock(mMutex);
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return static_cast<int>(mSessions.size());
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@@ -106,6 +111,7 @@ namespace ColumnLynx::Net {
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// IP management (simple for /24 subnet)
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// Get the lowest available IPv4 address; Returns 0 if none available
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uint32_t getFirstAvailableIP() const {
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std::shared_lock lock(mMutex);
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uint32_t baseIP = 0x0A0A0002; // 10.10.0.2
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@@ -116,14 +122,18 @@ namespace ColumnLynx::Net {
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if (mSessionIPs.find(candidateIP) == mSessionIPs.end()) {
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return candidateIP;
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}
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return 0; // Unavailable
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}
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}
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// Lock an IP as assigned to a specific session
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void lockIP(uint64_t sessionID, uint32_t ip) {
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std::unique_lock lock(mMutex);
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mSessionIPs[sessionID] = ip;
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}
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// Unlock the IP associated with a given session
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void deallocIP(uint64_t sessionID) {
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std::unique_lock lock(mMutex);
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mSessionIPs.erase(sessionID);
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@@ -9,6 +9,7 @@
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#include <array>
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namespace ColumnLynx::Net::UDP {
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// @deprecated
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// Shared between server and client
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enum class MessageType : uint8_t {
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PING = 0x01,
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@@ -184,7 +184,7 @@ namespace ColumnLynx::Utils {
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out << "----------------------\n";
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}
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//Panic the main thread and instantly halt execution. This produces a stack trace dump. Do not use by itself, throw an error instead.
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// Panic the main thread and instantly halt execution. This produces a stack trace dump. Do not use by itself, throw an error instead.
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static void panic(const std::string& reason) {
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std::cerr << "\n***\033[31m MAIN THREAD PANIC! \033[0m***\n";
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std::cerr << "Reason: " << reason << "\n";
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@@ -204,6 +204,7 @@ namespace ColumnLynx::Utils {
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std::cerr << "Panic trace written to panic_dump.txt\n";
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}
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// Gets the current time
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static std::string currentTime() {
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std::time_t t = std::time(nullptr);
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char buf[64];
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@@ -23,12 +23,18 @@
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#endif
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namespace ColumnLynx::Utils {
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// General log function. Use for logging important information.
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void log(const std::string &msg);
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// General warning function. Use for logging important warnings.
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void warn(const std::string &msg);
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// General error function. Use for logging failures and general errors.
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void error(const std::string &msg);
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// Debug log function. Use for logging non-important information. These will not print unless the binary is compiled with DEBUG=1
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void debug(const std::string &msg);
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// Returns the hostname of the running platform.
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std::string getHostname();
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// Returns the version of the running release.
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std::string getVersion();
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unsigned short serverPort();
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unsigned char protocolVersion();
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@@ -36,6 +42,7 @@ namespace ColumnLynx::Utils {
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// Raw byte to hex string conversion helper
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std::string bytesToHexString(const uint8_t* bytes, size_t length);
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// Hex string to raw byte conversion helper
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std::vector<uint8_t> hexStringToBytes(const std::string& hex);
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// uint8_t to raw string conversion helper
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@@ -59,12 +66,14 @@ namespace ColumnLynx::Utils {
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((x & 0xFF00000000000000ULL) >> 56);
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}
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// host -> big-endian (for little-endian hosts) - 64 bit
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inline constexpr uint64_t chtobe64(uint64_t x) {
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return cbswap64(x); // host -> big-endian (for little-endian hosts)
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return cbswap64(x);
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}
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// big-endian -> host (for little-endian hosts) - 64 bit
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inline constexpr uint64_t cbe64toh(uint64_t x) {
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return cbswap64(x); // big-endian -> host (for little-endian hosts)
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return cbswap64(x);
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}
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// Returns the config file in an unordered_map format. This purely reads the config file, you still need to parse it manually.
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@@ -33,12 +33,18 @@ namespace ColumnLynx::Net::TCP {
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return conn;
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}
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// Start a TCP Connection (Handler for an incoming connection)
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void start();
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// Send a message to the TCP client
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void sendMessage(ServerMessageType type, const std::string& data = "");
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// Set callback for disconnects
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void setDisconnectCallback(std::function<void(std::shared_ptr<TCPConnection>)> cb);
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// Disconnect the client
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void disconnect();
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// Get the assigned session ID
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uint64_t getSessionID() const;
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// Get the assigned AES key; You should probably access this via the Session Registry instead
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std::array<uint8_t, 32> getAESKey() const;
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private:
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@@ -51,7 +57,9 @@ namespace ColumnLynx::Net::TCP {
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mLastHeartbeatSent(std::chrono::steady_clock::now())
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{}
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// Start the heartbeat routine
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void mStartHeartbeat();
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// Handle an incoming TCP message
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void mHandleMessage(ClientMessageType type, const std::string& data);
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std::shared_ptr<MessageHandler> mHandler;
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@@ -62,10 +62,13 @@ namespace ColumnLynx::Net::TCP {
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mStartAccept();
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}
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// Stop the TCP Server
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void stop();
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private:
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// Start accepting clients via TCP
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void mStartAccept();
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asio::io_context &mIoContext;
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asio::ip::tcp::acceptor mAcceptor;
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std::unordered_set<TCPConnection::pointer> mClients;
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@@ -42,13 +42,18 @@ namespace ColumnLynx::Net::UDP {
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mStartReceive();
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}
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// Stop the UDP server
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void stop();
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// Send UDP data to an endpoint; Fetched via the Session Registry
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void sendData(const uint64_t sessionID, const std::string& data);
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private:
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// Start receiving UDP data
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void mStartReceive();
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// Handle an incoming UDP packet
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void mHandlePacket(std::size_t bytes);
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asio::ip::udp::socket mSocket;
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asio::ip::udp::endpoint mRemoteEndpoint;
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std::array<uint8_t, 2048> mRecvBuffer; // Adjust size as needed
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@@ -4,6 +4,8 @@
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#include <columnlynx/common/net/virtual_interface.hpp>
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// This is all fucking voodoo dark magic.
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namespace ColumnLynx::Net {
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// ------------------------------ Constructor ------------------------------
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VirtualInterface::VirtualInterface(const std::string& ifName)
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@@ -196,6 +196,13 @@ namespace ColumnLynx::Net::TCP {
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Nonce symNonce{}; // All zeros
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uint32_t clientIP = SessionRegistry::getInstance().getFirstAvailableIP();
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if (clientIP == 0) {
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Utils::warn("Out of available IPs! Disconnecting client " + reqAddr);
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disconnect();
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return;
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}
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Protocol::TunConfig tunConfig{};
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tunConfig.version = Utils::protocolVersion();
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tunConfig.prefixLength = 24;
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