/* Glue to tie telnet.c from ttywatch to the loader */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include "lang.h" #include "loader.h" #include "log.h" #include "telnet.h" #include "windows.h" #ifndef IPPORT_TELNET #define IPPORT_TELNET 23 #endif /* Forks, keeping the loader as our child (so we know when it dies). */ int beTelnet(int flags) { int sock; int conn; int addrLength; pid_t child; int i; int masterFd; struct sockaddr_in address; char buf[4096]; struct pollfd fds[3]; telnet_state ts = TS_DATA; char * termType; int height, width; struct winsize ws; if ((sock = socket(PF_INET, SOCK_STREAM, 0)) < 0) { logMessage("socket: %s", strerror(errno)); return -1; } address.sin_family = AF_INET; address.sin_port = htons(IPPORT_TELNET); memset(&address.sin_addr, 0, sizeof(address.sin_addr)); addrLength = sizeof(address); /* Let the kernel reuse the socket address. This lets us run twice in a row, without waiting for the (ip, port) tuple to time out. Makes testing much easier*/ conn = 1; setsockopt(sock, SOL_SOCKET, SO_REUSEADDR, &conn, sizeof(conn)); bind(sock, (struct sockaddr *) &address, sizeof(address)); listen(sock, 5); winStatus(45, 3, _("Telnet"), _("Waiting for telnet connection...")); if ((conn = accept(sock, (struct sockaddr *) &address, &addrLength)) < 0) { newtWinMessage(_("Error"), _("OK"), "accept failed: %s", strerror(errno)); close(sock); return -1; } stopNewt(); close(sock); telnet_negotiate(conn, &termType, &height, &width); #ifdef DEBUG printf("got term type %s\n", termType); #endif masterFd = open("/dev/ptyp0", O_RDWR); if (masterFd < 0) { logMessage("cannot open /dev/ttyp0"); close(conn); return -1; } if (height != -1 && width != -1) { #ifdef DEBUF printf("setting window size to %d x %d\n", width, height); #endif ws.ws_row = height; ws.ws_col = width; ioctl(masterFd, TIOCSWINSZ, &ws); } child = fork(); if (child) { #ifndef DEBUG startNewt(flags); winStatus(45, 3, _("Telnet"), _("Running anaconda via telnet...")); #endif fds[0].events = POLLIN; fds[0].fd = masterFd; fds[1].events = POLLIN; fds[1].fd = conn; while ((i = poll(fds, 2, -1)) > 0) { if (fds[0].revents) { i = read(masterFd, buf, sizeof(buf)); #ifdef DEBUG { int j; int row; for (row = 0; row < (i / 12) + 1; row++) { printf("wrote:"); for (j = (row * 12); j < i && j < ((row + 1) * 12); j++) printf(" 0x%2x", (unsigned char) buf[j]); printf("\n"); printf("wrote:"); for (j = (row * 12); j < i && j < ((row + 1) * 12); j++) { if (isprint(buf[j])) printf(" %c ", buf[j]); else printf(" "); } printf("\n"); } } #endif /* child died */ if (i < 0) break; telnet_send_output(conn, buf, i); } if (fds[1].revents) { i = read(conn, buf, sizeof(buf)); /* connection went away */ if (!i) break; i = telnet_process_input(&ts, buf, i); write(masterFd, buf, i); #ifdef DEBUG { int j; printf("got:"); for (j = 0; j < i; j++) printf(" 0x%x", (unsigned char) buf[j]); printf("\n"); } #endif } } if (i < 0) { logMessage("poll: %s", strerror(errno)); } #ifndef DEBUG stopNewt(); #endif kill(child, SIGTERM); close(conn); exit(0); } close(masterFd); setsid(); close(0); close(1); close(2); open("/dev/ttyp0", O_RDWR); dup(0); dup(0); /* brand new tty! */ setenv("TERM", termType, 1); startNewt(flags); return 0; }