333 lines
10 KiB
C++
333 lines
10 KiB
C++
#include "socket/iocp.h"
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#include "utils/thread_pool.h"
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namespace Network {
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IOCP::IOCP() {
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gen_ = std::mt19937(rd_());
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jitterDist_ = std::uniform_int_distribution<int>(-10, 10);
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}
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IOCP::~IOCP() { destruct(); }
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void IOCP::init(utils::ThreadPool* __IOCPThread, SessionProtocol proto) {
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IOCPThread_ = __IOCPThread;
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proto_ = proto;
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#ifdef _WIN32
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completionPort_ = ::CreateIoCompletionPort(INVALID_HANDLE_VALUE, NULL, 0, 0);
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if (completionPort_ == NULL) {
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spdlog::critical("CreateIoCompletionPort()");
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std::exit(EXIT_FAILURE);
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}
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int tCount = __IOCPThread->threadCount;
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spdlog::info("Resizing threadpool size to: {}", tCount * 2);
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__IOCPThread->respawnWorker(tCount * 2);
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for (int i = 0; i < tCount; i++)
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IOCPThread_->enqueueJob(
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[this](utils::ThreadPool* th, std::uint8_t __) { iocpWatcher_(th); },
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0);
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#endif
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}
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void IOCP::destruct() {
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#ifdef __linux__
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#endif
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}
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void IOCP::registerTCPSocket(IOCPPASSINDATA* data) {
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#ifdef _WIN32
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HANDLE returnData = ::CreateIoCompletionPort(
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(HANDLE)data->socket->sock, completionPort_, data->socket->sock, 0);
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if (returnData == 0) completionPort_ = returnData;
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IOCPPASSINDATA* recv_data = new IOCPPASSINDATA(data->bufsize);
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recv_data->event = IOCPEVENT::READ;
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recv_data->socket = data->socket;
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DWORD recvbytes = 0, flags = 0;
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int result = SOCKET_ERROR;
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::WSARecv(recv_data->socket->sock, &recv_data->wsabuf, 1, &recvbytes, &flags,
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&recv_data->overlapped, NULL);
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if (result == SOCKET_ERROR) {
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int err = ::WSAGetLastError();
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if (err != WSA_IO_PENDING) {
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auto err_msg = std::format("WSARecv failed: {}", err);
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throw std::runtime_error(err_msg);
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}
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}
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#endif
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}
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void IOCP::registerUDPSocket(IOCPPASSINDATA* data, Address recv_addr) {
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#ifdef _WIN32
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HANDLE returnData = ::CreateIoCompletionPort(
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(HANDLE)data->socket->sock, completionPort_, data->socket->sock, 0);
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if (returnData == 0) completionPort_ = returnData;
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IOCPPASSINDATA* recv_data = new IOCPPASSINDATA(data->bufsize);
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recv_data->event = IOCPEVENT::READ;
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recv_data->socket = data->socket;
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DWORD recvbytes = 0, flags = 0;
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int result = SOCKET_ERROR;
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::WSARecvFrom(recv_data->socket->sock, &recv_data->wsabuf, 1, &recvbytes,
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&flags, &recv_addr.addr, &recv_addr.length,
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&recv_data->overlapped, NULL);
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if (result == SOCKET_ERROR) {
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int err = ::WSAGetLastError();
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if (err != WSA_IO_PENDING) {
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auto err_msg = std::format("WSARecv failed: {}", err);
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throw std::runtime_error(err_msg);
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}
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}
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#endif
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}
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int IOCP::recv(IOCPPASSINDATA* data) { // 읽은 바이트수가 무조건 100임? 왜..?
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SOCKET sock = data->socket->sock;
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std::lock_guard lock(*GetRecvQueueMutex_(sock));
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auto queue = GetRecvQueue_(sock);
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std::uint32_t left_data = data->wsabuf.len;
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std::uint32_t copied = 0;
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while (!queue->empty() && left_data != 0) {
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auto front = queue->front();
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queue->pop_front();
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std::uint32_t offset = front.second;
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std::uint32_t available = front.first.size() - offset;
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std::uint32_t to_copy = (left_data < available) ? left_data : available;
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::memcpy(data->wsabuf.buf + copied, front.first.data() + offset, to_copy);
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copied += to_copy;
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left_data -= to_copy;
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offset += to_copy;
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if (offset < front.first.size()) {
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front.second = offset;
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queue->push_front(front);
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break;
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}
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}
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return copied;
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}
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int IOCP::send(SOCKET sock, std::vector<IOCPPASSINDATA*>* data) {
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auto lk = GetSendQueueMutex_(sock);
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auto queue = GetSendQueue_(sock);
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std::lock_guard lock(*lk);
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for (auto& it : *data) {
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it->event = IOCPEVENT::WRITE;
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queue->push_back(it);
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}
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IOCPThread_->enqueueJob(
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[this, sock](utils::ThreadPool* th, std::uint8_t __) {
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packet_sender_(sock);
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},
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0);
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return 0;
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}
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int IOCP::GetRecvedPacketCount(SOCKET sock) {
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std::lock_guard lock(socket_mod_mutex_);
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auto queue = GetRecvQueue_(sock);
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return queue->size();
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}
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void IOCP::iocpWatcher_(utils::ThreadPool* IOCPThread) {
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IOCPPASSINDATA* data;
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SOCKET sock;
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DWORD cbTransfrred;
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int jitter = jitterDist_(gen_);
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int retVal = GetQueuedCompletionStatus(completionPort_, &cbTransfrred,
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(PULONG_PTR)&sock,
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(LPOVERLAPPED*)&data, 1000 + jitter);
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if (retVal == 0 || cbTransfrred == 0) {
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DWORD lasterror = GetLastError();
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if (lasterror == WAIT_TIMEOUT) {
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IOCPThread->enqueueJob(
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[this](utils::ThreadPool* th, std::uint8_t __) { iocpWatcher_(th); },
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0);
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return;
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}
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data->event = IOCPEVENT::QUIT;
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spdlog::debug("Disconnected. [{}]",
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(std::string)(data->socket->remoteAddr));
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delete data;
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} else {
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data->transferredbytes = cbTransfrred;
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}
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std::vector<char> buf(16384); // SSL_read최대 반환 크기
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int red_data = 0;
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std::lock_guard lock(*GetRecvQueueMutex_(sock));
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auto queue_list = GetRecvQueue_(sock);
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if (data->event == IOCPEVENT::READ) {
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if (proto_ == SessionProtocol::TLS ||
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proto_ == SessionProtocol::QUIC) { // DEPRECATED. openssl을 사용할 수가
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// 없기 때문에 추후 완성 뒤에 기능을
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// 붙이든 해야 할 듯 함.
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// DEBUG: BIO_write 전 OpenSSL 에러 스택 확인 (혹시 모를 이전 에러)
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ERR_print_errors_fp(stderr); // 이미 오류 스택에 뭔가 있는지 확인용
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fprintf(stderr, "--- Before BIO_write ---\n");
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::BIO_write(::SSL_get_rbio(data->ssl.get()), data->wsabuf.buf,
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cbTransfrred);
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// DEBUG: BIO_write 후 OpenSSL 에러 스택 확인 (BIO_write에서 에러 발생 시)
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ERR_print_errors_fp(stderr); // BIO_write에서도 에러가 발생할 수 있음
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fprintf(stderr, "--- After BIO_write, cbTransfrred: %lu ---\n",
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cbTransfrred);
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while ((red_data = ::SSL_read(data->ssl.get(), buf.data(), buf.size())) >
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0) {
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queue_list->emplace_back(std::make_pair(
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std::vector<char>(buf.begin(), buf.begin() + red_data), 0));
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}
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if (red_data == -1) {
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auto ssl_error_code = SSL_get_error(
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data->ssl.get(), red_data); // 여기서 SSL_get_error 결과 저장
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auto err_msg = std::format("SSL_read failed with SSL_get_error: {}",
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ssl_error_code);
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fprintf(stderr, "%s\n", err_msg.c_str());
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// *** 가장 중요한 부분: SSL_ERROR_SSL일 때 상세 에러를 강제로 출력 시도
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// ***
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if (ssl_error_code == SSL_ERROR_SSL) {
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fprintf(stderr, "Detailed SSL_ERROR_SSL trace:\n");
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unsigned long err_peek;
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// ERR_get_error()를 사용하여 스택의 모든 오류를 팝하고 출력
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while ((err_peek = ERR_get_error()) != 0) {
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char err_str[256];
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ERR_error_string_n(err_peek, err_str, sizeof(err_str));
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fprintf(stderr, "OpenSSL stack error: %s\n", err_str);
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}
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} else {
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// SSL_ERROR_SSL이 아닌 다른 오류 (SYSCALL, WANT_READ 등)일 경우
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// ERR_print_errors_fp는 여전히 유용할 수 있음
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ERR_print_errors_fp(stderr);
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}
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throw std::runtime_error(err_msg); // 예외 발생
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}
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} else {
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::memcpy(buf.data(), data->wsabuf.buf, data->transferredbytes);
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queue_list->emplace_back(std::make_pair(
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std::vector<char>(buf.begin(), buf.begin() + data->transferredbytes),
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0));
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}
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DWORD recvbytes = 0, flags = 0;
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IOCPPASSINDATA* recv_data = new IOCPPASSINDATA(data->bufsize);
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recv_data->event = IOCPEVENT::READ;
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recv_data->socket = data->socket;
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delete data;
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::WSARecv(recv_data->socket->sock, &recv_data->wsabuf, 1, &recvbytes,
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&flags, &recv_data->overlapped, NULL);
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} else { // WRITE 시, 무시한다.
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delete data;
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}
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IOCPThread->enqueueJob(
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[this](utils::ThreadPool* th, std::uint8_t __) { iocpWatcher_(th); }, 0);
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}
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std::shared_ptr<std::list<IOCPPASSINDATA*>> IOCP::GetSendQueue_(SOCKET sock) {
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std::lock_guard lock(socket_mod_mutex_);
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if (send_queue_.find(sock) == send_queue_.end()) {
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send_queue_[sock] = std::make_shared<std::list<IOCPPASSINDATA*>>(
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std::list<IOCPPASSINDATA*>());
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}
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return send_queue_[sock];
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}
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std::shared_ptr<std::list<std::pair<std::vector<char>, std::uint32_t>>>
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IOCP::GetRecvQueue_(SOCKET sock) {
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std::lock_guard lock(socket_mod_mutex_);
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if (recv_queue_.find(sock) == recv_queue_.end()) {
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recv_queue_[sock] = std::make_shared<
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std::list<std::pair<std::vector<char>, std::uint32_t>>>(
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std::list<std::pair<std::vector<char>, std::uint32_t>>());
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}
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return recv_queue_[sock];
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}
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std::shared_ptr<std::mutex> IOCP::GetSendQueueMutex_(SOCKET sock) {
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std::lock_guard lock(socket_mod_mutex_);
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if (send_queue_mutex_.find(sock) == send_queue_mutex_.end()) {
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send_queue_mutex_[sock] = std::make_shared<std::mutex>();
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}
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return send_queue_mutex_[sock];
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}
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std::shared_ptr<std::mutex> IOCP::GetRecvQueueMutex_(SOCKET sock) {
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std::lock_guard lock(socket_mod_mutex_);
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if (recv_queue_mutex_.find(sock) == recv_queue_mutex_.end()) {
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recv_queue_mutex_[sock] = std::make_shared<std::mutex>();
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}
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return recv_queue_mutex_[sock];
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}
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void IOCP::packet_sender_(SOCKET sock) {
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auto queue = GetSendQueue_(sock);
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std::unique_lock lock(*GetSendQueueMutex_(sock));
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std::vector<char> buf(16384);
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WSABUF wsabuf;
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DWORD sendbytes = 0;
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while (!queue->empty()) {
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auto front = queue->front();
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queue->pop_front();
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front->event = IOCPEVENT::WRITE;
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int data_len = 0;
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if (proto_ == SessionProtocol::TLS || proto_ == SessionProtocol::QUIC) {
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int ret =
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::SSL_write(front->ssl.get(), front->wsabuf.buf, front->wsabuf.len);
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if (ret <= 0) {
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int err = ::SSL_get_error(front->ssl.get(), ret);
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if (err == SSL_ERROR_WANT_READ || err == SSL_ERROR_WANT_WRITE) {
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queue->push_front(front);
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break;
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}
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std::unique_lock lk(socket_mod_mutex_);
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send_queue_.erase(sock);
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break;
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}
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while ((data_len = ::BIO_read(::SSL_get_wbio(front->ssl.get()),
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buf.data(), buf.size())) > 0) {
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wsabuf.buf = buf.data();
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wsabuf.len = data_len;
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::WSASend(sock, &wsabuf, 1, &sendbytes, 0, nullptr, nullptr);
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}
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} else {
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data_len = front->wsabuf.len;
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wsabuf.buf = front->wsabuf.buf;
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wsabuf.len = data_len;
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::WSASend(sock, &wsabuf, 1, &sendbytes, 0, nullptr, nullptr);
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}
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}
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}
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} // namespace Network
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