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@ -33,22 +33,46 @@
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namespace srslte {
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namespace srslte {
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namespace net_utils {
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namespace net_utils {
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//! Set IP:port for ipv4
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bool set_sockaddr(sockaddr_in* addr, const char* ip_str, int port)
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bool set_sockaddr(sockaddr_in* addr, const char* ip_str, int port)
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{
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{
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// TODO: check whether IP4 or IP6 based on provided input
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addr->sin_family = AF_INET;
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addr->sin_family = AF_INET;
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if (inet_pton(AF_INET, ip_str, &addr->sin_addr) != 1) {
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if (inet_pton(addr->sin_family, ip_str, &addr->sin_addr) != 1) {
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perror("inet_pton");
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perror("inet_pton");
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return false;
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return false;
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}
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}
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addr->sin_port = (port != 0) ? htons(port) : 0;
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addr->sin_port = htons(port);
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return true;
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}
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//! Set IP:port for ipv6
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bool set_sockaddr(sockaddr_in6* addr, const char* ip_str, int port)
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{
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addr->sin6_family = AF_INET6;
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if (inet_pton(addr->sin6_family, ip_str, &addr->sin6_addr) != 1) {
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perror("inet_pton for ipv6");
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return false;
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}
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addr->sin6_port = htons(port);
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return true;
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return true;
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}
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}
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std::string get_ip(const sockaddr_in& addr)
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std::string get_ip(const sockaddr_in& addr)
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{
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{
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char ip_str[128]; // TODO: check max size
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char ip_str[INET_ADDRSTRLEN];
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inet_ntop(addr.sin_family, &addr.sin_addr, ip_str, sizeof(ip_str));
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if (inet_ntop(AF_INET, &addr.sin_addr, ip_str, sizeof(ip_str)) == nullptr) {
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return "<bad ipv4 address>";
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}
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return std::string{ip_str};
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}
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std::string get_ip(const sockaddr_in6& addr)
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{
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char ip_str[INET6_ADDRSTRLEN];
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if (inet_ntop(AF_INET6, &addr.sin6_addr, ip_str, sizeof(ip_str)) == nullptr) {
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return "<bad ipv6 address>";
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}
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return std::string{ip_str};
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return std::string{ip_str};
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}
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}
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@ -83,6 +107,107 @@ const char* protocol_to_string(protocol_type p)
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return "";
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return "";
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}
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}
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int open_socket(net_utils::addr_family ip_type,
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net_utils::socket_type socket_type,
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net_utils::protocol_type protocol,
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srslte::log* log_)
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{
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int fd = socket((int)ip_type, (int)socket_type, (int)protocol);
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if (fd == -1) {
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if (log_ != nullptr) {
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log_->error("Failed to open %s socket.\n", net_utils::protocol_to_string(protocol));
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} else {
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perror("Could not create socket\n");
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}
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}
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if (protocol == protocol_type::SCTP) {
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// Sets the data_io_event to be able to use sendrecv_info
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// Subscribes to the SCTP_SHUTDOWN event, to handle graceful shutdown
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struct sctp_event_subscribe evnts = {};
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evnts.sctp_data_io_event = 1;
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evnts.sctp_shutdown_event = 1;
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if (setsockopt(fd, IPPROTO_SCTP, SCTP_EVENTS, &evnts, sizeof(evnts)) != 0) {
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if (log_ != nullptr) {
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log_->error("Failed to subscribe to SCTP_SHUTDOWN event: %s\n", strerror(errno));
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} else {
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perror("setsockopt");
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}
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}
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}
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return fd;
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}
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bool bind_addr(int fd, const sockaddr_in& addr_in, srslte::log* log_)
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{
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if (fd < 0) {
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if (log_ != nullptr) {
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log_->error("Trying to bind to a closed socket\n");
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}
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return false;
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}
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if (bind(fd, (struct sockaddr*)&addr_in, sizeof(addr_in)) != 0) {
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if (log_ != nullptr) {
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log_->error("Failed to bind on address %s: %s errno %d\n", get_ip(addr_in).c_str(), strerror(errno), errno);
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} else {
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perror("bind()");
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}
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return false;
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}
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return true;
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}
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bool bind_addr(int fd, const char* bind_addr_str, int port, sockaddr_in* addr_result, srslte::log* log_)
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{
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sockaddr_in addr_tmp{};
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if (not net_utils::set_sockaddr(&addr_tmp, bind_addr_str, port)) {
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if (log_ != nullptr) {
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log_->error("Failed to convert IP address (%s) to sockaddr_in struct\n", bind_addr_str);
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}
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return false;
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}
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bind_addr(fd, addr_tmp, log_);
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if (addr_result != nullptr) {
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*addr_result = addr_tmp;
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}
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return true;
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}
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bool connect_to(int fd, const char* dest_addr_str, int dest_port, sockaddr_in* dest_sockaddr, srslte::log* log_)
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{
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if (fd < 0) {
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if (log_ != nullptr) {
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log_->error("tried to connect to remote address with an invalid socket.\n");
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} else {
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printf("ERROR: tried to connect to remote address with an invalid socket.\n");
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}
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return false;
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}
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sockaddr_in sockaddr_tmp{};
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if (not net_utils::set_sockaddr(&sockaddr_tmp, dest_addr_str, dest_port)) {
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if (log_ != nullptr) {
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log_->error("Error converting IP address (%s) to sockaddr_in structure\n", dest_addr_str);
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} else {
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printf("Error converting IP address (%s) to sockaddr_in structure\n", dest_addr_str);
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}
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return false;
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}
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if (dest_sockaddr != nullptr) {
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*dest_sockaddr = sockaddr_tmp;
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}
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if (connect(fd, (const struct sockaddr*)&sockaddr_tmp, sizeof(sockaddr_tmp)) == -1) {
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if (log_ != nullptr) {
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log_->error("Failed to establish socket connection to %s\n", dest_addr_str);
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} else {
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perror("connect()");
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}
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return false;
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}
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return true;
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}
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} // namespace net_utils
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} // namespace net_utils
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/********************************************
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/********************************************
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@ -128,27 +253,7 @@ void socket_handler_t::reset()
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bool socket_handler_t::bind_addr(const char* bind_addr_str, int port, srslte::log* log_)
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bool socket_handler_t::bind_addr(const char* bind_addr_str, int port, srslte::log* log_)
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{
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{
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if (sockfd < 0) {
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return net_utils::bind_addr(sockfd, bind_addr_str, port, &addr, log_);
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if (log_ != nullptr) {
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log_->error("Trying to bind to a closed socket\n");
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}
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return false;
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}
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if (not net_utils::set_sockaddr(&addr, bind_addr_str, port)) {
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if (log_ != nullptr) {
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log_->error("Failed to convert IP address (%s) to sockaddr_in struct\n", bind_addr_str);
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}
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return false;
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}
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if (bind(sockfd, (struct sockaddr*)&addr, sizeof(addr)) != 0) {
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if (log_ != nullptr) {
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log_->error("Failed to bind on address %s: %s errno %d\n", bind_addr_str, strerror(errno), errno);
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}
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return false;
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}
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return true;
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}
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}
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bool socket_handler_t::connect_to(const char* dest_addr_str,
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bool socket_handler_t::connect_to(const char* dest_addr_str,
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@ -156,28 +261,7 @@ bool socket_handler_t::connect_to(const char* dest_addr_str,
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sockaddr_in* dest_sockaddr,
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sockaddr_in* dest_sockaddr,
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srslte::log* log_)
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srslte::log* log_)
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{
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{
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if (sockfd < 0) {
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return net_utils::connect_to(sockfd, dest_addr_str, dest_port, dest_sockaddr, log_);
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if (log_ != nullptr) {
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log_->error("tried to connect to remote address with a closed socket.\n");
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}
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return false;
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}
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sockaddr_in sockaddr_tmp{};
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sockaddr_in* sockaddr_ptr = (dest_sockaddr == nullptr) ? &sockaddr_tmp : dest_sockaddr;
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*sockaddr_ptr = {};
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if (not net_utils::set_sockaddr(sockaddr_ptr, dest_addr_str, dest_port)) {
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if (log_ != nullptr) {
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log_->error("Error converting IP address (%s) to sockaddr_in structure\n", dest_addr_str);
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}
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return false;
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}
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if (connect(sockfd, (const struct sockaddr*)sockaddr_ptr, sizeof(*sockaddr_ptr)) == -1) {
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if (log_ != nullptr) {
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log_->error("Failed to establish socket connection to %s\n", dest_addr_str);
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}
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return false;
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}
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return true;
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}
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}
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bool socket_handler_t::open_socket(net_utils::addr_family ip_type,
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bool socket_handler_t::open_socket(net_utils::addr_family ip_type,
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@ -191,15 +275,8 @@ bool socket_handler_t::open_socket(net_utils::addr_family ip_type,
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}
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}
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return false;
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return false;
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}
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}
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sockfd = socket((int)ip_type, (int)socket_type, (int)protocol);
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sockfd = net_utils::open_socket(ip_type, socket_type, protocol, log_);
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if (sockfd == -1) {
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return sockfd >= 0;
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if (log_ != nullptr) {
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log_->error("Failed to open %s socket.\n", net_utils::protocol_to_string(protocol));
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}
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perror("Could not create socket\n");
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return false;
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}
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return true;
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}
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}
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/***********************************************************************
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/***********************************************************************
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@ -217,16 +294,6 @@ bool sctp_init_socket(socket_handler_t* socket,
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if (not socket->open_socket(net_utils::addr_family::ipv4, socktype, net_utils::protocol_type::SCTP, log_)) {
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|
if (not socket->open_socket(net_utils::addr_family::ipv4, socktype, net_utils::protocol_type::SCTP, log_)) {
|
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|
|
return false;
|
|
|
|
return false;
|
|
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|
}
|
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|
}
|
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|
|
// Sets the data_io_event to be able to use sendrecv_info
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|
|
|
|
|
|
// Subscribes to the SCTP_SHUTDOWN event, to handle graceful shutdown
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|
|
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|
|
|
|
struct sctp_event_subscribe evnts = {};
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|
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|
evnts.sctp_data_io_event = 1;
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|
|
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|
|
evnts.sctp_shutdown_event = 1;
|
|
|
|
|
|
|
|
if (setsockopt(socket->fd(), IPPROTO_SCTP, SCTP_EVENTS, &evnts, sizeof(evnts)) != 0) {
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|
|
|
|
|
|
perror("setsockopt");
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|
|
|
|
|
|
|
socket->reset();
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|
|
|
|
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|
|
return false;
|
|
|
|
|
|
|
|
}
|
|
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|
|
|
if (not socket->bind_addr(bind_addr_str, port, log_)) {
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|
|
|
if (not socket->bind_addr(bind_addr_str, port, log_)) {
|
|
|
|
socket->reset();
|
|
|
|
socket->reset();
|
|
|
|
return false;
|
|
|
|
return false;
|
|
|
@ -581,13 +648,15 @@ void rx_multisocket_handler::run_thread()
|
|
|
|
|
|
|
|
|
|
|
|
// call read callback for all SCTP/TCP/UDP connections
|
|
|
|
// call read callback for all SCTP/TCP/UDP connections
|
|
|
|
for (auto& handler_pair : active_sockets) {
|
|
|
|
for (auto& handler_pair : active_sockets) {
|
|
|
|
if (not FD_ISSET(handler_pair.first, &read_fd_set)) {
|
|
|
|
int fd = handler_pair.first;
|
|
|
|
|
|
|
|
recv_task* callback = handler_pair.second.get();
|
|
|
|
|
|
|
|
if (not FD_ISSET(fd, &read_fd_set)) {
|
|
|
|
continue;
|
|
|
|
continue;
|
|
|
|
}
|
|
|
|
}
|
|
|
|
bool socket_valid = (*handler_pair.second)(handler_pair.first);
|
|
|
|
bool socket_valid = callback->operator()(fd);
|
|
|
|
if (not socket_valid) {
|
|
|
|
if (not socket_valid) {
|
|
|
|
rxSockWarn("The socket fd=%d has been closed by peer\n", handler_pair.first);
|
|
|
|
rxSockWarn("The socket fd=%d has been closed by peer\n", fd);
|
|
|
|
remove_socket_unprotected(handler_pair.first, &total_fd_set, &max_fd);
|
|
|
|
remove_socket_unprotected(fd, &total_fd_set, &max_fd);
|
|
|
|
}
|
|
|
|
}
|
|
|
|
}
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
|
|