1 1.45 shm /* $NetBSD: tftpd.c,v 1.45 2016/07/20 20:18:21 shm Exp $ */ 2 1.9 mrg 3 1.1 cgd /* 4 1.9 mrg * Copyright (c) 1983, 1993 5 1.9 mrg * The Regents of the University of California. All rights reserved. 6 1.1 cgd * 7 1.1 cgd * Redistribution and use in source and binary forms, with or without 8 1.1 cgd * modification, are permitted provided that the following conditions 9 1.1 cgd * are met: 10 1.1 cgd * 1. Redistributions of source code must retain the above copyright 11 1.1 cgd * notice, this list of conditions and the following disclaimer. 12 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright 13 1.1 cgd * notice, this list of conditions and the following disclaimer in the 14 1.1 cgd * documentation and/or other materials provided with the distribution. 15 1.26 agc * 3. Neither the name of the University nor the names of its contributors 16 1.1 cgd * may be used to endorse or promote products derived from this software 17 1.1 cgd * without specific prior written permission. 18 1.1 cgd * 19 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 20 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 21 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 22 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 23 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 24 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 25 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 26 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 27 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 28 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 29 1.1 cgd * SUCH DAMAGE. 30 1.1 cgd */ 31 1.1 cgd 32 1.9 mrg #include <sys/cdefs.h> 33 1.1 cgd #ifndef lint 34 1.31 lukem __COPYRIGHT("@(#) Copyright (c) 1983, 1993\ 35 1.31 lukem The Regents of the University of California. All rights reserved."); 36 1.9 mrg #if 0 37 1.9 mrg static char sccsid[] = "@(#)tftpd.c 8.1 (Berkeley) 6/4/93"; 38 1.9 mrg #else 39 1.45 shm __RCSID("$NetBSD: tftpd.c,v 1.45 2016/07/20 20:18:21 shm Exp $"); 40 1.9 mrg #endif 41 1.1 cgd #endif /* not lint */ 42 1.1 cgd 43 1.1 cgd /* 44 1.1 cgd * Trivial file transfer protocol server. 45 1.1 cgd * 46 1.9 mrg * This version includes many modifications by Jim Guyton 47 1.9 mrg * <guyton@rand-unix>. 48 1.1 cgd */ 49 1.1 cgd 50 1.9 mrg #include <sys/param.h> 51 1.1 cgd #include <sys/ioctl.h> 52 1.1 cgd #include <sys/stat.h> 53 1.9 mrg #include <sys/socket.h> 54 1.9 mrg 55 1.1 cgd #include <netinet/in.h> 56 1.1 cgd #include <arpa/tftp.h> 57 1.9 mrg #include <arpa/inet.h> 58 1.9 mrg 59 1.9 mrg #include <ctype.h> 60 1.9 mrg #include <errno.h> 61 1.9 mrg #include <fcntl.h> 62 1.14 lukem #include <grp.h> 63 1.1 cgd #include <netdb.h> 64 1.14 lukem #include <pwd.h> 65 1.1 cgd #include <setjmp.h> 66 1.9 mrg #include <signal.h> 67 1.1 cgd #include <stdio.h> 68 1.9 mrg #include <stdlib.h> 69 1.1 cgd #include <string.h> 70 1.9 mrg #include <syslog.h> 71 1.28 kleink #include <time.h> 72 1.9 mrg #include <unistd.h> 73 1.9 mrg 74 1.9 mrg #include "tftpsubs.h" 75 1.1 cgd 76 1.14 lukem #define DEFAULTUSER "nobody" 77 1.7 jtc 78 1.1 cgd #define TIMEOUT 5 79 1.1 cgd 80 1.33 christos static int peer; 81 1.33 christos static int rexmtval = TIMEOUT; 82 1.33 christos static int maxtimeout = 5*TIMEOUT; 83 1.33 christos 84 1.33 christos static char buf[MAXPKTSIZE]; 85 1.33 christos static char ackbuf[PKTSIZE]; 86 1.33 christos static char oackbuf[PKTSIZE]; 87 1.33 christos static struct sockaddr_storage from; 88 1.33 christos static socklen_t fromlen; 89 1.33 christos static int debug; 90 1.33 christos 91 1.33 christos static int tftp_opt_tsize = 0; 92 1.33 christos static int tftp_blksize = SEGSIZE; 93 1.33 christos static int tftp_tsize = 0; 94 1.25 briggs 95 1.9 mrg /* 96 1.9 mrg * Null-terminated directory prefix list for absolute pathname requests and 97 1.9 mrg * search list for relative pathname requests. 98 1.9 mrg * 99 1.9 mrg * MAXDIRS should be at least as large as the number of arguments that 100 1.9 mrg * inetd allows (currently 20). 101 1.9 mrg */ 102 1.9 mrg #define MAXDIRS 20 103 1.9 mrg static struct dirlist { 104 1.9 mrg char *name; 105 1.9 mrg int len; 106 1.9 mrg } dirs[MAXDIRS+1]; 107 1.9 mrg static int suppress_naks; 108 1.9 mrg static int logging; 109 1.9 mrg static int secure; 110 1.33 christos static char pathsep = '\0'; 111 1.9 mrg static char *securedir; 112 1.37 hubertf static int unrestricted_writes; /* uploaded files don't have to exist */ 113 1.44 buhrow static int broadcast_client = 0; /* Some clients ack to the broadcast address */ 114 1.9 mrg 115 1.9 mrg struct formats; 116 1.9 mrg 117 1.22 lukem static const char *errtomsg(int); 118 1.33 christos static void nak(int); 119 1.39 joerg __dead static void tftp(struct tftphdr *, int); 120 1.39 joerg __dead static void usage(void); 121 1.22 lukem static char *verifyhost(struct sockaddr *); 122 1.39 joerg __dead static void justquit(int); 123 1.33 christos static void recvfile(struct formats *, int, int); 124 1.33 christos static void sendfile(struct formats *, int, int); 125 1.39 joerg __dead static void timer(int); 126 1.24 christos static const char *opcode(int); 127 1.33 christos static int validate_access(char **, int); 128 1.1 cgd 129 1.33 christos static struct formats { 130 1.22 lukem const char *f_mode; 131 1.22 lukem int (*f_validate)(char **, int); 132 1.25 briggs void (*f_send)(struct formats *, int, int); 133 1.25 briggs void (*f_recv)(struct formats *, int, int); 134 1.22 lukem int f_convert; 135 1.9 mrg } formats[] = { 136 1.9 mrg { "netascii", validate_access, sendfile, recvfile, 1 }, 137 1.9 mrg { "octet", validate_access, sendfile, recvfile, 0 }, 138 1.33 christos { .f_mode = NULL } 139 1.9 mrg }; 140 1.4 mycroft 141 1.5 cgd static void 142 1.22 lukem usage(void) 143 1.5 cgd { 144 1.22 lukem 145 1.14 lukem syslog(LOG_ERR, 146 1.44 buhrow "Usage: %s [-bcdln] [-g group] [-p pathsep] [-s directory] [-u user] [directory ...]", 147 1.23 cgd getprogname()); 148 1.5 cgd exit(1); 149 1.5 cgd } 150 1.5 cgd 151 1.9 mrg int 152 1.22 lukem main(int argc, char *argv[]) 153 1.1 cgd { 154 1.18 itojun struct sockaddr_storage me; 155 1.22 lukem struct passwd *pwent; 156 1.22 lukem struct group *grent; 157 1.22 lukem struct tftphdr *tp; 158 1.33 christos const char *tgtuser, *tgtgroup; 159 1.33 christos char *ep; 160 1.22 lukem int n, ch, on, fd; 161 1.30 mrg int soopt; 162 1.30 mrg socklen_t len; 163 1.22 lukem uid_t curuid, tgtuid; 164 1.22 lukem gid_t curgid, tgtgid; 165 1.22 lukem long nid; 166 1.1 cgd 167 1.22 lukem n = 0; 168 1.22 lukem fd = 0; 169 1.28 kleink tzset(); 170 1.11 lukem openlog("tftpd", LOG_PID | LOG_NDELAY, LOG_DAEMON); 171 1.14 lukem tgtuser = DEFAULTUSER; 172 1.14 lukem tgtgroup = NULL; 173 1.14 lukem curuid = getuid(); 174 1.14 lukem curgid = getgid(); 175 1.5 cgd 176 1.44 buhrow while ((ch = getopt(argc, argv, "bcdg:lnp:s:u:")) != -1) 177 1.9 mrg switch (ch) { 178 1.44 buhrow case 'b': 179 1.44 buhrow /* 180 1.44 buhrow * Some clients, notably older Cisco boot loaders, 181 1.44 buhrow * send their acknowledgements to the broadcast address 182 1.44 buhrow * rather than the unicast address of the server. 183 1.44 buhrow * Allow those clients to inter-operate with us. 184 1.44 buhrow * It's worth noting that this interaction doesn't cause the 185 1.44 buhrow * server to change where it sends the responses, meaning 186 1.44 buhrow * servers that have this flag enabled are no more 187 1.44 buhrow * susceptible to magnifcation DOS attacks than those 188 1.44 buhrow * servers that don't use this flag. This flag merely 189 1.44 buhrow * permits the reception of acknowledgement traffic to the 190 1.44 buhrow * broadcast address/specific port number that's being used for 191 1.44 buhrow * this session as well as the unicast address/specific port 192 1.44 buhrow * number for this session. For example, if the session is 193 1.44 buhrow * expecting acks on 192.168.1.40:50201, then this flag 194 1.44 buhrow * would also allow acks to be returned to 195 1.44 buhrow * 192.168.1.255:50201, assuming that 192.168.1.255 is the 196 1.44 buhrow * broadcast address for the subnet containing 192.168.1.40. 197 1.44 buhrow */ 198 1.44 buhrow broadcast_client = 1; 199 1.44 buhrow break; 200 1.43 jnemeth case 'c': 201 1.38 hubertf unrestricted_writes = 1; 202 1.38 hubertf break; 203 1.38 hubertf 204 1.24 christos case 'd': 205 1.24 christos debug++; 206 1.24 christos break; 207 1.14 lukem 208 1.14 lukem case 'g': 209 1.14 lukem tgtgroup = optarg; 210 1.14 lukem break; 211 1.14 lukem 212 1.9 mrg case 'l': 213 1.9 mrg logging = 1; 214 1.9 mrg break; 215 1.9 mrg 216 1.9 mrg case 'n': 217 1.9 mrg suppress_naks = 1; 218 1.9 mrg break; 219 1.9 mrg 220 1.33 christos case 'p': 221 1.33 christos if (optarg[0] == '\0' || optarg[1] != '\0') 222 1.33 christos usage(); 223 1.33 christos pathsep = optarg[0]; 224 1.33 christos break; 225 1.33 christos 226 1.5 cgd case 's': 227 1.5 cgd secure = 1; 228 1.9 mrg securedir = optarg; 229 1.5 cgd break; 230 1.5 cgd 231 1.14 lukem case 'u': 232 1.14 lukem tgtuser = optarg; 233 1.14 lukem break; 234 1.14 lukem 235 1.5 cgd default: 236 1.5 cgd usage(); 237 1.5 cgd break; 238 1.5 cgd } 239 1.5 cgd 240 1.9 mrg if (optind < argc) { 241 1.9 mrg struct dirlist *dirp; 242 1.9 mrg 243 1.9 mrg /* Get list of directory prefixes. Skip relative pathnames. */ 244 1.9 mrg for (dirp = dirs; optind < argc && dirp < &dirs[MAXDIRS]; 245 1.9 mrg optind++) { 246 1.9 mrg if (argv[optind][0] == '/') { 247 1.9 mrg dirp->name = argv[optind]; 248 1.9 mrg dirp->len = strlen(dirp->name); 249 1.9 mrg dirp++; 250 1.9 mrg } 251 1.9 mrg } 252 1.9 mrg } 253 1.9 mrg 254 1.14 lukem if (*tgtuser == '\0' || (tgtgroup != NULL && *tgtgroup == '\0')) 255 1.14 lukem usage(); 256 1.14 lukem 257 1.14 lukem nid = (strtol(tgtuser, &ep, 10)); 258 1.14 lukem if (*ep == '\0') { 259 1.36 mbalmer if ((uid_t)nid > UID_MAX) { 260 1.14 lukem syslog(LOG_ERR, "uid %ld is too large", nid); 261 1.14 lukem exit(1); 262 1.14 lukem } 263 1.14 lukem pwent = getpwuid((uid_t)nid); 264 1.14 lukem } else 265 1.14 lukem pwent = getpwnam(tgtuser); 266 1.14 lukem if (pwent == NULL) { 267 1.14 lukem syslog(LOG_ERR, "unknown user `%s'", tgtuser); 268 1.14 lukem exit(1); 269 1.14 lukem } 270 1.14 lukem tgtuid = pwent->pw_uid; 271 1.14 lukem tgtgid = pwent->pw_gid; 272 1.14 lukem 273 1.14 lukem if (tgtgroup != NULL) { 274 1.14 lukem nid = (strtol(tgtgroup, &ep, 10)); 275 1.14 lukem if (*ep == '\0') { 276 1.36 mbalmer if ((uid_t)nid > GID_MAX) { 277 1.14 lukem syslog(LOG_ERR, "gid %ld is too large", nid); 278 1.14 lukem exit(1); 279 1.14 lukem } 280 1.14 lukem grent = getgrgid((gid_t)nid); 281 1.14 lukem } else 282 1.14 lukem grent = getgrnam(tgtgroup); 283 1.14 lukem if (grent != NULL) 284 1.14 lukem tgtgid = grent->gr_gid; 285 1.14 lukem else { 286 1.14 lukem syslog(LOG_ERR, "unknown group `%s'", tgtgroup); 287 1.14 lukem exit(1); 288 1.14 lukem } 289 1.14 lukem } 290 1.14 lukem 291 1.9 mrg if (secure) { 292 1.9 mrg if (chdir(securedir) < 0) { 293 1.9 mrg syslog(LOG_ERR, "chdir %s: %m", securedir); 294 1.9 mrg exit(1); 295 1.4 mycroft } 296 1.9 mrg if (chroot(".")) { 297 1.14 lukem syslog(LOG_ERR, "chroot: %m"); 298 1.4 mycroft exit(1); 299 1.4 mycroft } 300 1.4 mycroft } 301 1.5 cgd 302 1.22 lukem if (logging) 303 1.22 lukem syslog(LOG_DEBUG, "running as user `%s' (%d), group `%s' (%d)", 304 1.22 lukem tgtuser, tgtuid, tgtgroup ? tgtgroup : "(unspecified)", 305 1.22 lukem tgtgid); 306 1.14 lukem if (curgid != tgtgid) { 307 1.14 lukem if (setgid(tgtgid)) { 308 1.14 lukem syslog(LOG_ERR, "setgid to %d: %m", (int)tgtgid); 309 1.14 lukem exit(1); 310 1.14 lukem } 311 1.14 lukem if (setgroups(0, NULL)) { 312 1.14 lukem syslog(LOG_ERR, "setgroups: %m"); 313 1.14 lukem exit(1); 314 1.14 lukem } 315 1.8 mrg } 316 1.8 mrg 317 1.14 lukem if (curuid != tgtuid) { 318 1.14 lukem if (setuid(tgtuid)) { 319 1.14 lukem syslog(LOG_ERR, "setuid to %d: %m", (int)tgtuid); 320 1.14 lukem exit(1); 321 1.14 lukem } 322 1.4 mycroft } 323 1.5 cgd 324 1.9 mrg on = 1; 325 1.5 cgd if (ioctl(fd, FIONBIO, &on) < 0) { 326 1.14 lukem syslog(LOG_ERR, "ioctl(FIONBIO): %m"); 327 1.1 cgd exit(1); 328 1.1 cgd } 329 1.1 cgd fromlen = sizeof (from); 330 1.5 cgd n = recvfrom(fd, buf, sizeof (buf), 0, 331 1.1 cgd (struct sockaddr *)&from, &fromlen); 332 1.1 cgd if (n < 0) { 333 1.14 lukem syslog(LOG_ERR, "recvfrom: %m"); 334 1.1 cgd exit(1); 335 1.1 cgd } 336 1.1 cgd /* 337 1.1 cgd * Now that we have read the message out of the UDP 338 1.1 cgd * socket, we fork and exit. Thus, inetd will go back 339 1.1 cgd * to listening to the tftp port, and the next request 340 1.1 cgd * to come in will start up a new instance of tftpd. 341 1.1 cgd * 342 1.1 cgd * We do this so that inetd can run tftpd in "wait" mode. 343 1.1 cgd * The problem with tftpd running in "nowait" mode is that 344 1.1 cgd * inetd may get one or more successful "selects" on the 345 1.1 cgd * tftp port before we do our receive, so more than one 346 1.1 cgd * instance of tftpd may be started up. Worse, if tftpd 347 1.1 cgd * break before doing the above "recvfrom", inetd would 348 1.1 cgd * spawn endless instances, clogging the system. 349 1.1 cgd */ 350 1.1 cgd { 351 1.1 cgd int pid; 352 1.30 mrg int i; 353 1.30 mrg socklen_t j; 354 1.1 cgd 355 1.1 cgd for (i = 1; i < 20; i++) { 356 1.1 cgd pid = fork(); 357 1.1 cgd if (pid < 0) { 358 1.1 cgd sleep(i); 359 1.1 cgd /* 360 1.1 cgd * flush out to most recently sent request. 361 1.1 cgd * 362 1.1 cgd * This may drop some request, but those 363 1.1 cgd * will be resent by the clients when 364 1.1 cgd * they timeout. The positive effect of 365 1.1 cgd * this flush is to (try to) prevent more 366 1.1 cgd * than one tftpd being started up to service 367 1.1 cgd * a single request from a single client. 368 1.1 cgd */ 369 1.1 cgd j = sizeof from; 370 1.5 cgd i = recvfrom(fd, buf, sizeof (buf), 0, 371 1.1 cgd (struct sockaddr *)&from, &j); 372 1.1 cgd if (i > 0) { 373 1.1 cgd n = i; 374 1.1 cgd fromlen = j; 375 1.1 cgd } 376 1.1 cgd } else { 377 1.1 cgd break; 378 1.1 cgd } 379 1.1 cgd } 380 1.1 cgd if (pid < 0) { 381 1.14 lukem syslog(LOG_ERR, "fork: %m"); 382 1.1 cgd exit(1); 383 1.1 cgd } else if (pid != 0) { 384 1.1 cgd exit(0); 385 1.1 cgd } 386 1.1 cgd } 387 1.15 explorer 388 1.15 explorer /* 389 1.15 explorer * remember what address this was sent to, so we can respond on the 390 1.15 explorer * same interface 391 1.15 explorer */ 392 1.18 itojun len = sizeof(me); 393 1.18 itojun if (getsockname(fd, (struct sockaddr *)&me, &len) == 0) { 394 1.18 itojun switch (me.ss_family) { 395 1.18 itojun case AF_INET: 396 1.18 itojun ((struct sockaddr_in *)&me)->sin_port = 0; 397 1.18 itojun break; 398 1.18 itojun case AF_INET6: 399 1.18 itojun ((struct sockaddr_in6 *)&me)->sin6_port = 0; 400 1.18 itojun break; 401 1.18 itojun default: 402 1.18 itojun /* unsupported */ 403 1.18 itojun break; 404 1.18 itojun } 405 1.18 itojun } else { 406 1.18 itojun memset(&me, 0, sizeof(me)); 407 1.18 itojun me.ss_family = from.ss_family; 408 1.18 itojun me.ss_len = from.ss_len; 409 1.15 explorer } 410 1.15 explorer 411 1.1 cgd alarm(0); 412 1.5 cgd close(fd); 413 1.1 cgd close(1); 414 1.18 itojun peer = socket(from.ss_family, SOCK_DGRAM, 0); 415 1.1 cgd if (peer < 0) { 416 1.14 lukem syslog(LOG_ERR, "socket: %m"); 417 1.1 cgd exit(1); 418 1.1 cgd } 419 1.44 buhrow if (broadcast_client) { 420 1.44 buhrow soopt = 1; 421 1.44 buhrow if (setsockopt(peer, SOL_SOCKET, SO_BROADCAST, (void *) &soopt, sizeof(soopt)) < 0) { 422 1.44 buhrow syslog(LOG_ERR, "set SO_BROADCAST: %m"); 423 1.44 buhrow exit(1); 424 1.44 buhrow } 425 1.44 buhrow } 426 1.18 itojun if (bind(peer, (struct sockaddr *)&me, me.ss_len) < 0) { 427 1.14 lukem syslog(LOG_ERR, "bind: %m"); 428 1.1 cgd exit(1); 429 1.1 cgd } 430 1.25 briggs soopt = 65536; /* larger than we'll ever need */ 431 1.25 briggs if (setsockopt(peer, SOL_SOCKET, SO_SNDBUF, (void *) &soopt, sizeof(soopt)) < 0) { 432 1.25 briggs syslog(LOG_ERR, "set SNDBUF: %m"); 433 1.25 briggs exit(1); 434 1.25 briggs } 435 1.25 briggs if (setsockopt(peer, SOL_SOCKET, SO_RCVBUF, (void *) &soopt, sizeof(soopt)) < 0) { 436 1.25 briggs syslog(LOG_ERR, "set RCVBUF: %m"); 437 1.25 briggs exit(1); 438 1.25 briggs } 439 1.25 briggs 440 1.1 cgd tp = (struct tftphdr *)buf; 441 1.1 cgd tp->th_opcode = ntohs(tp->th_opcode); 442 1.1 cgd if (tp->th_opcode == RRQ || tp->th_opcode == WRQ) 443 1.1 cgd tftp(tp, n); 444 1.1 cgd exit(1); 445 1.1 cgd } 446 1.1 cgd 447 1.25 briggs static int 448 1.40 christos blk_handler(struct tftphdr *tp, const char *val, char *ack, size_t asize, 449 1.42 christos size_t *ackl, int *ecode) 450 1.25 briggs { 451 1.25 briggs unsigned long bsize; 452 1.25 briggs char *endp; 453 1.25 briggs int l; 454 1.25 briggs 455 1.25 briggs /* 456 1.25 briggs * On these failures, we could just ignore the blocksize option. 457 1.25 briggs * Perhaps that should be a command-line option. 458 1.25 briggs */ 459 1.25 briggs errno = 0; 460 1.25 briggs bsize = strtoul(val, &endp, 10); 461 1.25 briggs if ((bsize == ULONG_MAX && errno == ERANGE) || *endp) { 462 1.25 briggs syslog(LOG_NOTICE, "%s: %s request for %s: " 463 1.25 briggs "illegal value %s for blksize option", 464 1.25 briggs verifyhost((struct sockaddr *)&from), 465 1.25 briggs tp->th_opcode == WRQ ? "write" : "read", 466 1.25 briggs tp->th_stuff, val); 467 1.42 christos *ecode = EBADOP; 468 1.42 christos return -1; 469 1.25 briggs } 470 1.25 briggs if (bsize < 8 || bsize > 65464) { 471 1.25 briggs syslog(LOG_NOTICE, "%s: %s request for %s: " 472 1.25 briggs "out of range value %s for blksize option", 473 1.25 briggs verifyhost((struct sockaddr *)&from), 474 1.25 briggs tp->th_opcode == WRQ ? "write" : "read", 475 1.25 briggs tp->th_stuff, val); 476 1.42 christos *ecode = EBADOP; 477 1.42 christos return -1; 478 1.25 briggs } 479 1.25 briggs 480 1.25 briggs tftp_blksize = bsize; 481 1.40 christos if (asize > *ackl && (l = snprintf(ack + *ackl, asize - *ackl, 482 1.42 christos "blksize%c%lu%c", 0, bsize, 0)) > 0) { 483 1.40 christos *ackl += l; 484 1.42 christos } else { 485 1.42 christos *ecode = EBADOP; 486 1.40 christos return -1; 487 1.42 christos } 488 1.25 briggs 489 1.25 briggs return 0; 490 1.25 briggs } 491 1.25 briggs 492 1.25 briggs static int 493 1.40 christos timeout_handler(struct tftphdr *tp, const char *val, char *ack, size_t asize, 494 1.42 christos size_t *ackl, int *ecode) 495 1.25 briggs { 496 1.25 briggs unsigned long tout; 497 1.25 briggs char *endp; 498 1.25 briggs int l; 499 1.25 briggs 500 1.25 briggs errno = 0; 501 1.25 briggs tout = strtoul(val, &endp, 10); 502 1.25 briggs if ((tout == ULONG_MAX && errno == ERANGE) || *endp) { 503 1.25 briggs syslog(LOG_NOTICE, "%s: %s request for %s: " 504 1.25 briggs "illegal value %s for timeout option", 505 1.25 briggs verifyhost((struct sockaddr *)&from), 506 1.25 briggs tp->th_opcode == WRQ ? "write" : "read", 507 1.25 briggs tp->th_stuff, val); 508 1.42 christos *ecode = EBADOP; 509 1.42 christos return -1; 510 1.25 briggs } 511 1.25 briggs if (tout < 1 || tout > 255) { 512 1.25 briggs syslog(LOG_NOTICE, "%s: %s request for %s: " 513 1.25 briggs "out of range value %s for timeout option", 514 1.25 briggs verifyhost((struct sockaddr *)&from), 515 1.25 briggs tp->th_opcode == WRQ ? "write" : "read", 516 1.25 briggs tp->th_stuff, val); 517 1.25 briggs return 0; 518 1.25 briggs } 519 1.25 briggs 520 1.25 briggs rexmtval = tout; 521 1.40 christos if (asize > *ackl && (l = snprintf(ack + *ackl, asize - *ackl, 522 1.41 christos "timeout%c%lu%c", 0, tout, 0)) > 0) 523 1.40 christos *ackl += l; 524 1.40 christos else 525 1.40 christos return -1; 526 1.25 briggs /* 527 1.25 briggs * Arbitrarily pick a maximum timeout on a request to 3 528 1.25 briggs * retransmissions if the interval timeout is more than 529 1.25 briggs * one minute. Longest possible timeout is therefore 530 1.25 briggs * 3 * 255 - 1, or 764 seconds. 531 1.25 briggs */ 532 1.25 briggs if (rexmtval > 60) { 533 1.25 briggs maxtimeout = rexmtval * 3; 534 1.25 briggs } else { 535 1.25 briggs maxtimeout = rexmtval * 5; 536 1.25 briggs } 537 1.25 briggs 538 1.25 briggs return 0; 539 1.25 briggs } 540 1.25 briggs 541 1.25 briggs static int 542 1.40 christos tsize_handler(struct tftphdr *tp, const char *val, char *ack, size_t asize, 543 1.42 christos size_t *ackl, int *ecode) 544 1.25 briggs { 545 1.25 briggs unsigned long fsize; 546 1.25 briggs char *endp; 547 1.25 briggs 548 1.25 briggs /* 549 1.25 briggs * Maximum file even with extended tftp is 65535 blocks of 550 1.25 briggs * length 65464, or 4290183240 octets (4784056 less than 2^32). 551 1.25 briggs * unsigned long is at least 32 bits on all NetBSD archs. 552 1.25 briggs */ 553 1.25 briggs 554 1.25 briggs errno = 0; 555 1.25 briggs fsize = strtoul(val, &endp, 10); 556 1.25 briggs if ((fsize == ULONG_MAX && errno == ERANGE) || *endp) { 557 1.25 briggs syslog(LOG_NOTICE, "%s: %s request for %s: " 558 1.25 briggs "illegal value %s for tsize option", 559 1.25 briggs verifyhost((struct sockaddr *)&from), 560 1.25 briggs tp->th_opcode == WRQ ? "write" : "read", 561 1.25 briggs tp->th_stuff, val); 562 1.42 christos *ecode = EBADOP; 563 1.42 christos return -1; 564 1.25 briggs } 565 1.25 briggs if (fsize > (unsigned long) 65535 * 65464) { 566 1.25 briggs syslog(LOG_NOTICE, "%s: %s request for %s: " 567 1.25 briggs "out of range value %s for tsize option", 568 1.25 briggs verifyhost((struct sockaddr *)&from), 569 1.25 briggs tp->th_opcode == WRQ ? "write" : "read", 570 1.25 briggs tp->th_stuff, val); 571 1.42 christos *ecode = EBADOP; 572 1.42 christos return -1; 573 1.25 briggs } 574 1.25 briggs 575 1.25 briggs tftp_opt_tsize = 1; 576 1.25 briggs tftp_tsize = fsize; 577 1.25 briggs /* 578 1.25 briggs * We will report this later -- either replying with the fsize (WRQ) 579 1.25 briggs * or replying with the actual filesize (RRQ). 580 1.25 briggs */ 581 1.25 briggs 582 1.25 briggs return 0; 583 1.25 briggs } 584 1.25 briggs 585 1.33 christos static const struct tftp_options { 586 1.33 christos const char *o_name; 587 1.40 christos int (*o_handler)(struct tftphdr *, const char *, char *, size_t, 588 1.40 christos size_t *, int *); 589 1.25 briggs } options[] = { 590 1.25 briggs { "blksize", blk_handler }, 591 1.25 briggs { "timeout", timeout_handler }, 592 1.25 briggs { "tsize", tsize_handler }, 593 1.33 christos { .o_name = NULL } 594 1.25 briggs }; 595 1.25 briggs 596 1.25 briggs /* 597 1.25 briggs * Get options for an extended tftp session. Stuff the ones we 598 1.25 briggs * recognize in oackbuf. 599 1.25 briggs */ 600 1.25 briggs static int 601 1.40 christos get_options(struct tftphdr *tp, char *cp, int size, char *ackb, size_t asize, 602 1.42 christos size_t *alen, int *ecode) 603 1.25 briggs { 604 1.33 christos const struct tftp_options *op; 605 1.25 briggs char *option, *value, *endp; 606 1.42 christos int r, rv=0; 607 1.25 briggs 608 1.25 briggs endp = cp + size; 609 1.25 briggs while (cp < endp) { 610 1.25 briggs option = cp; 611 1.25 briggs while (*cp && cp < endp) { 612 1.29 dsl *cp = tolower((unsigned char)*cp); 613 1.25 briggs cp++; 614 1.25 briggs } 615 1.25 briggs if (*cp) { 616 1.25 briggs /* if we have garbage at the end, just ignore it */ 617 1.25 briggs break; 618 1.25 briggs } 619 1.25 briggs cp++; /* skip over NUL */ 620 1.25 briggs value = cp; 621 1.25 briggs while (*cp && cp < endp) { 622 1.25 briggs cp++; 623 1.25 briggs } 624 1.25 briggs if (*cp) { 625 1.25 briggs /* if we have garbage at the end, just ignore it */ 626 1.25 briggs break; 627 1.25 briggs } 628 1.25 briggs cp++; 629 1.25 briggs for (op = options; op->o_name; op++) { 630 1.25 briggs if (strcmp(op->o_name, option) == 0) 631 1.25 briggs break; 632 1.25 briggs } 633 1.25 briggs if (op->o_name) { 634 1.42 christos r = op->o_handler(tp, value, ackb, asize, alen, ecode); 635 1.25 briggs if (r < 0) { 636 1.25 briggs rv = -1; 637 1.25 briggs break; 638 1.25 briggs } 639 1.25 briggs rv++; 640 1.25 briggs } /* else ignore unknown options */ 641 1.25 briggs } 642 1.25 briggs 643 1.25 briggs return rv; 644 1.25 briggs } 645 1.25 briggs 646 1.1 cgd /* 647 1.1 cgd * Handle initial connection protocol. 648 1.1 cgd */ 649 1.9 mrg static void 650 1.22 lukem tftp(struct tftphdr *tp, int size) 651 1.1 cgd { 652 1.14 lukem struct formats *pf; 653 1.22 lukem char *cp; 654 1.22 lukem char *filename, *mode; 655 1.40 christos int first, ecode, etftp = 0, r; 656 1.40 christos size_t alen; 657 1.22 lukem 658 1.30 mrg ecode = 0; /* XXX gcc */ 659 1.22 lukem first = 1; 660 1.22 lukem mode = NULL; 661 1.1 cgd 662 1.1 cgd filename = cp = tp->th_stuff; 663 1.1 cgd again: 664 1.1 cgd while (cp < buf + size) { 665 1.1 cgd if (*cp == '\0') 666 1.1 cgd break; 667 1.1 cgd cp++; 668 1.1 cgd } 669 1.1 cgd if (*cp != '\0') { 670 1.1 cgd nak(EBADOP); 671 1.1 cgd exit(1); 672 1.1 cgd } 673 1.1 cgd if (first) { 674 1.1 cgd mode = ++cp; 675 1.1 cgd first = 0; 676 1.1 cgd goto again; 677 1.1 cgd } 678 1.1 cgd for (cp = mode; *cp; cp++) 679 1.29 dsl *cp = tolower((unsigned char)*cp); 680 1.1 cgd for (pf = formats; pf->f_mode; pf++) 681 1.1 cgd if (strcmp(pf->f_mode, mode) == 0) 682 1.1 cgd break; 683 1.1 cgd if (pf->f_mode == 0) { 684 1.1 cgd nak(EBADOP); 685 1.1 cgd exit(1); 686 1.1 cgd } 687 1.25 briggs /* 688 1.25 briggs * cp currently points to the NUL byte following the mode. 689 1.25 briggs * 690 1.25 briggs * If we have some valid options, then let's assume that we're 691 1.25 briggs * now dealing with an extended tftp session. Note that if we 692 1.25 briggs * don't get any options, then we *must* assume that we do not 693 1.25 briggs * have an extended tftp session. If we get options, we fill 694 1.25 briggs * in the ack buf to acknowledge them. If we skip that, then 695 1.25 briggs * the client *must* assume that we are not using an extended 696 1.25 briggs * session. 697 1.25 briggs */ 698 1.25 briggs size -= (++cp - (char *) tp); 699 1.25 briggs if (size > 0 && *cp) { 700 1.25 briggs alen = 2; /* Skip over opcode */ 701 1.40 christos r = get_options(tp, cp, size, oackbuf, sizeof(oackbuf), 702 1.40 christos &alen, &ecode); 703 1.25 briggs if (r > 0) { 704 1.25 briggs etftp = 1; 705 1.25 briggs } else if (r < 0) { 706 1.25 briggs nak(ecode); 707 1.25 briggs exit(1); 708 1.25 briggs } 709 1.25 briggs } 710 1.33 christos /* 711 1.33 christos * Globally replace the path separator given in the -p option 712 1.33 christos * with / to cope with clients expecting a non-unix path separator. 713 1.33 christos */ 714 1.33 christos if (pathsep != '\0') { 715 1.33 christos for (cp = filename; *cp != '\0'; ++cp) { 716 1.33 christos if (*cp == pathsep) 717 1.33 christos *cp = '/'; 718 1.33 christos } 719 1.33 christos } 720 1.9 mrg ecode = (*pf->f_validate)(&filename, tp->th_opcode); 721 1.9 mrg if (logging) { 722 1.9 mrg syslog(LOG_INFO, "%s: %s request for %s: %s", 723 1.18 itojun verifyhost((struct sockaddr *)&from), 724 1.9 mrg tp->th_opcode == WRQ ? "write" : "read", 725 1.9 mrg filename, errtomsg(ecode)); 726 1.9 mrg } 727 1.1 cgd if (ecode) { 728 1.9 mrg /* 729 1.9 mrg * Avoid storms of naks to a RRQ broadcast for a relative 730 1.9 mrg * bootfile pathname from a diskless Sun. 731 1.9 mrg */ 732 1.9 mrg if (suppress_naks && *filename != '/' && ecode == ENOTFOUND) 733 1.9 mrg exit(0); 734 1.1 cgd nak(ecode); 735 1.1 cgd exit(1); 736 1.1 cgd } 737 1.25 briggs 738 1.25 briggs if (etftp) { 739 1.25 briggs struct tftphdr *oack_h; 740 1.25 briggs 741 1.25 briggs if (tftp_opt_tsize) { 742 1.25 briggs int l; 743 1.25 briggs 744 1.40 christos if (sizeof(oackbuf) > alen && 745 1.40 christos (l = snprintf(oackbuf + alen, 746 1.40 christos sizeof(oackbuf) - alen, "tsize%c%u%c", 0, 747 1.41 christos tftp_tsize, 0)) > 0) 748 1.40 christos alen += l; 749 1.25 briggs } 750 1.25 briggs oack_h = (struct tftphdr *) oackbuf; 751 1.25 briggs oack_h->th_opcode = htons(OACK); 752 1.25 briggs } 753 1.25 briggs 754 1.1 cgd if (tp->th_opcode == WRQ) 755 1.25 briggs (*pf->f_recv)(pf, etftp, alen); 756 1.1 cgd else 757 1.25 briggs (*pf->f_send)(pf, etftp, alen); 758 1.1 cgd exit(0); 759 1.1 cgd } 760 1.1 cgd 761 1.1 cgd 762 1.1 cgd FILE *file; 763 1.1 cgd 764 1.1 cgd /* 765 1.1 cgd * Validate file access. Since we 766 1.1 cgd * have no uid or gid, for now require 767 1.1 cgd * file to exist and be publicly 768 1.1 cgd * readable/writable. 769 1.1 cgd * If we were invoked with arguments 770 1.1 cgd * from inetd then the file must also be 771 1.1 cgd * in one of the given directory prefixes. 772 1.1 cgd */ 773 1.9 mrg int 774 1.22 lukem validate_access(char **filep, int mode) 775 1.22 lukem { 776 1.22 lukem struct stat stbuf; 777 1.22 lukem struct dirlist *dirp; 778 1.22 lukem static char pathname[MAXPATHLEN]; 779 1.22 lukem char *filename; 780 1.22 lukem int fd; 781 1.37 hubertf int create = 0; 782 1.37 hubertf int trunc = 0; 783 1.22 lukem 784 1.22 lukem filename = *filep; 785 1.1 cgd 786 1.9 mrg /* 787 1.9 mrg * Prevent tricksters from getting around the directory restrictions 788 1.9 mrg */ 789 1.9 mrg if (strstr(filename, "/../")) 790 1.9 mrg return (EACCESS); 791 1.9 mrg 792 1.9 mrg if (*filename == '/') { 793 1.4 mycroft /* 794 1.9 mrg * Allow the request if it's in one of the approved locations. 795 1.9 mrg * Special case: check the null prefix ("/") by looking 796 1.9 mrg * for length = 1 and relying on the arg. processing that 797 1.9 mrg * it's a /. 798 1.4 mycroft */ 799 1.9 mrg for (dirp = dirs; dirp->name != NULL; dirp++) { 800 1.9 mrg if (dirp->len == 1 || 801 1.9 mrg (!strncmp(filename, dirp->name, dirp->len) && 802 1.9 mrg filename[dirp->len] == '/')) 803 1.9 mrg break; 804 1.9 mrg } 805 1.9 mrg /* If directory list is empty, allow access to any file */ 806 1.9 mrg if (dirp->name == NULL && dirp != dirs) 807 1.1 cgd return (EACCESS); 808 1.9 mrg if (stat(filename, &stbuf) < 0) 809 1.9 mrg return (errno == ENOENT ? ENOTFOUND : EACCESS); 810 1.10 mycroft if (!S_ISREG(stbuf.st_mode)) 811 1.9 mrg return (ENOTFOUND); 812 1.9 mrg if (mode == RRQ) { 813 1.9 mrg if ((stbuf.st_mode & S_IROTH) == 0) 814 1.9 mrg return (EACCESS); 815 1.9 mrg } else { 816 1.9 mrg if ((stbuf.st_mode & S_IWOTH) == 0) 817 1.9 mrg return (EACCESS); 818 1.9 mrg } 819 1.1 cgd } else { 820 1.9 mrg /* 821 1.9 mrg * Relative file name: search the approved locations for it. 822 1.9 mrg */ 823 1.9 mrg 824 1.16 aidan if (!strncmp(filename, "../", 3)) 825 1.1 cgd return (EACCESS); 826 1.9 mrg 827 1.9 mrg /* 828 1.16 aidan * Find the first file that exists in any of the directories, 829 1.16 aidan * check access on it. 830 1.9 mrg */ 831 1.9 mrg if (dirs[0].name != NULL) { 832 1.9 mrg for (dirp = dirs; dirp->name != NULL; dirp++) { 833 1.9 mrg snprintf(pathname, sizeof pathname, "%s/%s", 834 1.9 mrg dirp->name, filename); 835 1.9 mrg if (stat(pathname, &stbuf) == 0 && 836 1.9 mrg (stbuf.st_mode & S_IFMT) == S_IFREG) { 837 1.16 aidan break; 838 1.9 mrg } 839 1.9 mrg } 840 1.9 mrg if (dirp->name == NULL) 841 1.16 aidan return (ENOTFOUND); 842 1.16 aidan if (mode == RRQ && !(stbuf.st_mode & S_IROTH)) 843 1.16 aidan return (EACCESS); 844 1.16 aidan if (mode == WRQ && !(stbuf.st_mode & S_IWOTH)) 845 1.16 aidan return (EACCESS); 846 1.9 mrg *filep = filename = pathname; 847 1.16 aidan } else { 848 1.37 hubertf int stat_rc; 849 1.37 hubertf 850 1.16 aidan /* 851 1.16 aidan * If there's no directory list, take our cue from the 852 1.16 aidan * absolute file request check above (*filename == '/'), 853 1.16 aidan * and allow access to anything. 854 1.16 aidan */ 855 1.37 hubertf stat_rc = stat(filename, &stbuf); 856 1.16 aidan if (mode == RRQ) { 857 1.37 hubertf /* Read request */ 858 1.37 hubertf if (stat_rc < 0) 859 1.37 hubertf return (errno == ENOENT ? ENOTFOUND : EACCESS); 860 1.37 hubertf if (!S_ISREG(stbuf.st_mode)) 861 1.37 hubertf return (ENOTFOUND); 862 1.16 aidan if ((stbuf.st_mode & S_IROTH) == 0) 863 1.16 aidan return (EACCESS); 864 1.16 aidan } else { 865 1.37 hubertf if (stat_rc < 0) { 866 1.37 hubertf /* Can't stat */ 867 1.37 hubertf if (errno == EACCES) { 868 1.37 hubertf /* Permission denied */ 869 1.37 hubertf return EACCESS; 870 1.37 hubertf } else { 871 1.37 hubertf /* Not there */ 872 1.37 hubertf if (unrestricted_writes) { 873 1.37 hubertf /* need to creat new file! */ 874 1.37 hubertf create = O_CREAT; 875 1.37 hubertf } else { 876 1.37 hubertf /* Permission denied */ 877 1.37 hubertf return EACCESS; 878 1.37 hubertf } 879 1.37 hubertf } 880 1.37 hubertf } else { 881 1.37 hubertf /* Can stat */ 882 1.37 hubertf if ((stbuf.st_mode & S_IWOTH) == 0) { 883 1.37 hubertf return (EACCESS); 884 1.37 hubertf } 885 1.37 hubertf trunc = O_TRUNC; 886 1.37 hubertf } 887 1.16 aidan } 888 1.9 mrg *filep = filename; 889 1.16 aidan } 890 1.1 cgd } 891 1.25 briggs 892 1.25 briggs if (tftp_opt_tsize && mode == RRQ) 893 1.25 briggs tftp_tsize = (unsigned long) stbuf.st_size; 894 1.25 briggs 895 1.37 hubertf fd = open(filename, mode == RRQ ? O_RDONLY : O_WRONLY | trunc | create, 896 1.37 hubertf 0644); /* debatable */ 897 1.1 cgd if (fd < 0) 898 1.1 cgd return (errno + 100); 899 1.1 cgd file = fdopen(fd, (mode == RRQ)? "r":"w"); 900 1.1 cgd if (file == NULL) { 901 1.16 aidan close(fd); 902 1.22 lukem return (errno + 100); 903 1.1 cgd } 904 1.1 cgd return (0); 905 1.1 cgd } 906 1.1 cgd 907 1.33 christos static int timeout; 908 1.33 christos static jmp_buf timeoutbuf; 909 1.1 cgd 910 1.33 christos static void 911 1.22 lukem timer(int dummy) 912 1.1 cgd { 913 1.1 cgd 914 1.1 cgd timeout += rexmtval; 915 1.1 cgd if (timeout >= maxtimeout) 916 1.1 cgd exit(1); 917 1.1 cgd longjmp(timeoutbuf, 1); 918 1.1 cgd } 919 1.1 cgd 920 1.24 christos static const char * 921 1.24 christos opcode(int code) 922 1.24 christos { 923 1.32 lukem static char obuf[64]; 924 1.24 christos 925 1.24 christos switch (code) { 926 1.24 christos case RRQ: 927 1.24 christos return "RRQ"; 928 1.24 christos case WRQ: 929 1.24 christos return "WRQ"; 930 1.24 christos case DATA: 931 1.24 christos return "DATA"; 932 1.24 christos case ACK: 933 1.24 christos return "ACK"; 934 1.24 christos case ERROR: 935 1.24 christos return "ERROR"; 936 1.25 briggs case OACK: 937 1.25 briggs return "OACK"; 938 1.24 christos default: 939 1.33 christos (void)snprintf(obuf, sizeof(obuf), "*code 0x%x*", code); 940 1.32 lukem return obuf; 941 1.24 christos } 942 1.24 christos } 943 1.24 christos 944 1.1 cgd /* 945 1.1 cgd * Send the requested file. 946 1.1 cgd */ 947 1.33 christos static void 948 1.33 christos sendfile(struct formats *pf, volatile int etftp, int acklength) 949 1.1 cgd { 950 1.19 dogcow volatile unsigned int block; 951 1.22 lukem struct tftphdr *dp; 952 1.22 lukem struct tftphdr *ap; /* ack packet */ 953 1.33 christos volatile int size; 954 1.33 christos int n; 955 1.1 cgd 956 1.1 cgd signal(SIGALRM, timer); 957 1.1 cgd ap = (struct tftphdr *)ackbuf; 958 1.25 briggs if (etftp) { 959 1.25 briggs dp = (struct tftphdr *)oackbuf; 960 1.25 briggs size = acklength - 4; 961 1.25 briggs block = 0; 962 1.25 briggs } else { 963 1.25 briggs dp = r_init(); 964 1.25 briggs size = 0; 965 1.25 briggs block = 1; 966 1.25 briggs } 967 1.25 briggs 968 1.1 cgd do { 969 1.25 briggs if (block > 0) { 970 1.25 briggs size = readit(file, &dp, tftp_blksize, pf->f_convert); 971 1.25 briggs if (size < 0) { 972 1.25 briggs nak(errno + 100); 973 1.25 briggs goto abort; 974 1.25 briggs } 975 1.25 briggs dp->th_opcode = htons((u_short)DATA); 976 1.25 briggs dp->th_block = htons((u_short)block); 977 1.1 cgd } 978 1.1 cgd timeout = 0; 979 1.9 mrg (void)setjmp(timeoutbuf); 980 1.1 cgd 981 1.1 cgd send_data: 982 1.25 briggs if (!etftp && debug) 983 1.24 christos syslog(LOG_DEBUG, "Send DATA %u", block); 984 1.44 buhrow if ((n = sendto(peer, dp, size + 4, 0, (struct sockaddr *)&from, fromlen)) != size + 4) { 985 1.14 lukem syslog(LOG_ERR, "tftpd: write: %m"); 986 1.1 cgd goto abort; 987 1.1 cgd } 988 1.25 briggs if (block) 989 1.25 briggs read_ahead(file, tftp_blksize, pf->f_convert); 990 1.1 cgd for ( ; ; ) { 991 1.1 cgd alarm(rexmtval); /* read the ack */ 992 1.44 buhrow n = recvfrom(peer, ackbuf, tftp_blksize, 0,(struct sockaddr 993 1.44 buhrow *)&from, &fromlen ); 994 1.1 cgd alarm(0); 995 1.1 cgd if (n < 0) { 996 1.14 lukem syslog(LOG_ERR, "tftpd: read: %m"); 997 1.1 cgd goto abort; 998 1.1 cgd } 999 1.1 cgd ap->th_opcode = ntohs((u_short)ap->th_opcode); 1000 1.1 cgd ap->th_block = ntohs((u_short)ap->th_block); 1001 1.24 christos switch (ap->th_opcode) { 1002 1.24 christos case ERROR: 1003 1.1 cgd goto abort; 1004 1.9 mrg 1005 1.24 christos case ACK: 1006 1.33 christos if (etftp && ap->th_block == 0) { 1007 1.25 briggs etftp = 0; 1008 1.25 briggs acklength = 0; 1009 1.25 briggs dp = r_init(); 1010 1.25 briggs goto done; 1011 1.25 briggs } 1012 1.33 christos if (ap->th_block == (u_short)block) 1013 1.24 christos goto done; 1014 1.24 christos if (debug) 1015 1.24 christos syslog(LOG_DEBUG, "Resync ACK %u != %u", 1016 1.24 christos (unsigned int)ap->th_block, block); 1017 1.1 cgd /* Re-synchronize with the other side */ 1018 1.25 briggs (void) synchnet(peer, tftp_blksize); 1019 1.33 christos if (ap->th_block == (u_short)(block - 1)) 1020 1.1 cgd goto send_data; 1021 1.45 shm /* FALLTHROUGH */ 1022 1.24 christos default: 1023 1.24 christos syslog(LOG_INFO, "Received %s in sendfile\n", 1024 1.24 christos opcode(dp->th_opcode)); 1025 1.1 cgd } 1026 1.1 cgd 1027 1.1 cgd } 1028 1.24 christos done: 1029 1.24 christos if (debug) 1030 1.24 christos syslog(LOG_DEBUG, "Received ACK for block %u", block); 1031 1.33 christos if (block == UINT16_MAX && size == tftp_blksize) 1032 1.33 christos syslog(LOG_WARNING, 1033 1.33 christos "Block number wrapped (hint: increase block size)"); 1034 1.1 cgd block++; 1035 1.25 briggs } while (size == tftp_blksize || block == 1); 1036 1.1 cgd abort: 1037 1.1 cgd (void) fclose(file); 1038 1.1 cgd } 1039 1.1 cgd 1040 1.33 christos static void 1041 1.22 lukem justquit(int dummy) 1042 1.1 cgd { 1043 1.22 lukem 1044 1.1 cgd exit(0); 1045 1.1 cgd } 1046 1.1 cgd 1047 1.1 cgd /* 1048 1.1 cgd * Receive a file. 1049 1.1 cgd */ 1050 1.33 christos static void 1051 1.33 christos recvfile(struct formats *pf, volatile int etftp, volatile int acklength) 1052 1.1 cgd { 1053 1.19 dogcow volatile unsigned int block; 1054 1.22 lukem struct tftphdr *dp; 1055 1.22 lukem struct tftphdr *ap; /* ack buffer */ 1056 1.33 christos volatile int size; 1057 1.33 christos int n; 1058 1.1 cgd 1059 1.1 cgd signal(SIGALRM, timer); 1060 1.1 cgd dp = w_init(); 1061 1.25 briggs ap = (struct tftphdr *)oackbuf; 1062 1.9 mrg block = 0; 1063 1.1 cgd do { 1064 1.1 cgd timeout = 0; 1065 1.25 briggs if (etftp == 0) { 1066 1.25 briggs ap = (struct tftphdr *)ackbuf; 1067 1.25 briggs ap->th_opcode = htons((u_short)ACK); 1068 1.25 briggs ap->th_block = htons((u_short)block); 1069 1.25 briggs acklength = 4; 1070 1.25 briggs } 1071 1.24 christos if (debug) 1072 1.24 christos syslog(LOG_DEBUG, "Sending ACK for block %u\n", block); 1073 1.33 christos if (block == UINT16_MAX) 1074 1.33 christos syslog(LOG_WARNING, 1075 1.33 christos "Block number wrapped (hint: increase block size)"); 1076 1.1 cgd block++; 1077 1.1 cgd (void) setjmp(timeoutbuf); 1078 1.1 cgd send_ack: 1079 1.33 christos ap = (struct tftphdr *) (etftp ? oackbuf : ackbuf); 1080 1.44 buhrow if (sendto(peer, ap, acklength, 0, (struct sockaddr *)&from, fromlen) != acklength) { 1081 1.14 lukem syslog(LOG_ERR, "tftpd: write: %m"); 1082 1.1 cgd goto abort; 1083 1.1 cgd } 1084 1.1 cgd write_behind(file, pf->f_convert); 1085 1.1 cgd for ( ; ; ) { 1086 1.1 cgd alarm(rexmtval); 1087 1.44 buhrow n = recvfrom(peer, dp, tftp_blksize + 4, 0, (struct sockaddr 1088 1.44 buhrow *)&from, &fromlen); 1089 1.1 cgd alarm(0); 1090 1.1 cgd if (n < 0) { /* really? */ 1091 1.14 lukem syslog(LOG_ERR, "tftpd: read: %m"); 1092 1.1 cgd goto abort; 1093 1.1 cgd } 1094 1.25 briggs etftp = 0; 1095 1.1 cgd dp->th_opcode = ntohs((u_short)dp->th_opcode); 1096 1.1 cgd dp->th_block = ntohs((u_short)dp->th_block); 1097 1.24 christos if (debug) 1098 1.24 christos syslog(LOG_DEBUG, "Received %s for block %u", 1099 1.24 christos opcode(dp->th_opcode), 1100 1.24 christos (unsigned int)dp->th_block); 1101 1.24 christos 1102 1.24 christos switch (dp->th_opcode) { 1103 1.24 christos case ERROR: 1104 1.1 cgd goto abort; 1105 1.24 christos case DATA: 1106 1.24 christos if (dp->th_block == block) 1107 1.24 christos goto done; /* normal */ 1108 1.24 christos if (debug) 1109 1.24 christos syslog(LOG_DEBUG, "Resync %u != %u", 1110 1.24 christos (unsigned int)dp->th_block, block); 1111 1.1 cgd /* Re-synchronize with the other side */ 1112 1.25 briggs (void) synchnet(peer, tftp_blksize); 1113 1.1 cgd if (dp->th_block == (block-1)) 1114 1.1 cgd goto send_ack; /* rexmit */ 1115 1.24 christos break; 1116 1.24 christos default: 1117 1.24 christos syslog(LOG_INFO, "Received %s in recvfile\n", 1118 1.24 christos opcode(dp->th_opcode)); 1119 1.24 christos break; 1120 1.1 cgd } 1121 1.1 cgd } 1122 1.24 christos done: 1123 1.24 christos if (debug) 1124 1.24 christos syslog(LOG_DEBUG, "Got block %u", block); 1125 1.1 cgd /* size = write(file, dp->th_data, n - 4); */ 1126 1.1 cgd size = writeit(file, &dp, n - 4, pf->f_convert); 1127 1.1 cgd if (size != (n-4)) { /* ahem */ 1128 1.1 cgd if (size < 0) nak(errno + 100); 1129 1.1 cgd else nak(ENOSPACE); 1130 1.1 cgd goto abort; 1131 1.1 cgd } 1132 1.25 briggs } while (size == tftp_blksize); 1133 1.1 cgd write_behind(file, pf->f_convert); 1134 1.1 cgd (void) fclose(file); /* close data file */ 1135 1.1 cgd 1136 1.1 cgd ap->th_opcode = htons((u_short)ACK); /* send the "final" ack */ 1137 1.1 cgd ap->th_block = htons((u_short)(block)); 1138 1.24 christos if (debug) 1139 1.24 christos syslog(LOG_DEBUG, "Send final ACK %u", block); 1140 1.44 buhrow (void) sendto(peer, ackbuf, 4, 0, (struct sockaddr *)&from, fromlen); 1141 1.1 cgd 1142 1.1 cgd signal(SIGALRM, justquit); /* just quit on timeout */ 1143 1.1 cgd alarm(rexmtval); 1144 1.44 buhrow n = recvfrom(peer, buf, sizeof (buf), 0, (struct sockaddr *)&from, &fromlen); /* normally times out and quits */ 1145 1.1 cgd alarm(0); 1146 1.1 cgd if (n >= 4 && /* if read some data */ 1147 1.1 cgd dp->th_opcode == DATA && /* and got a data block */ 1148 1.1 cgd block == dp->th_block) { /* then my last ack was lost */ 1149 1.44 buhrow (void) sendto(peer, ackbuf, 4, 0, (struct sockaddr *)&from, fromlen); /* resend final ack */ 1150 1.1 cgd } 1151 1.1 cgd abort: 1152 1.1 cgd return; 1153 1.1 cgd } 1154 1.1 cgd 1155 1.13 mycroft const struct errmsg { 1156 1.22 lukem int e_code; 1157 1.22 lukem const char *e_msg; 1158 1.1 cgd } errmsgs[] = { 1159 1.1 cgd { EUNDEF, "Undefined error code" }, 1160 1.1 cgd { ENOTFOUND, "File not found" }, 1161 1.1 cgd { EACCESS, "Access violation" }, 1162 1.1 cgd { ENOSPACE, "Disk full or allocation exceeded" }, 1163 1.1 cgd { EBADOP, "Illegal TFTP operation" }, 1164 1.1 cgd { EBADID, "Unknown transfer ID" }, 1165 1.1 cgd { EEXISTS, "File already exists" }, 1166 1.1 cgd { ENOUSER, "No such user" }, 1167 1.25 briggs { EOPTNEG, "Option negotiation failed" }, 1168 1.1 cgd { -1, 0 } 1169 1.1 cgd }; 1170 1.1 cgd 1171 1.13 mycroft static const char * 1172 1.22 lukem errtomsg(int error) 1173 1.9 mrg { 1174 1.22 lukem static char ebuf[20]; 1175 1.14 lukem const struct errmsg *pe; 1176 1.9 mrg 1177 1.9 mrg if (error == 0) 1178 1.22 lukem return ("success"); 1179 1.9 mrg for (pe = errmsgs; pe->e_code >= 0; pe++) 1180 1.9 mrg if (pe->e_code == error) 1181 1.22 lukem return (pe->e_msg); 1182 1.22 lukem snprintf(ebuf, sizeof(ebuf), "error %d", error); 1183 1.22 lukem return (ebuf); 1184 1.9 mrg } 1185 1.9 mrg 1186 1.1 cgd /* 1187 1.1 cgd * Send a nak packet (error message). 1188 1.1 cgd * Error code passed in is one of the 1189 1.1 cgd * standard TFTP codes, or a UNIX errno 1190 1.1 cgd * offset by 100. 1191 1.1 cgd */ 1192 1.9 mrg static void 1193 1.22 lukem nak(int error) 1194 1.1 cgd { 1195 1.22 lukem const struct errmsg *pe; 1196 1.14 lukem struct tftphdr *tp; 1197 1.22 lukem int length; 1198 1.22 lukem size_t msglen; 1199 1.1 cgd 1200 1.1 cgd tp = (struct tftphdr *)buf; 1201 1.1 cgd tp->th_opcode = htons((u_short)ERROR); 1202 1.21 itojun msglen = sizeof(buf) - (&tp->th_msg[0] - buf); 1203 1.1 cgd for (pe = errmsgs; pe->e_code >= 0; pe++) 1204 1.1 cgd if (pe->e_code == error) 1205 1.1 cgd break; 1206 1.1 cgd if (pe->e_code < 0) { 1207 1.1 cgd tp->th_code = EUNDEF; /* set 'undef' errorcode */ 1208 1.21 itojun strlcpy(tp->th_msg, strerror(error - 100), msglen); 1209 1.13 mycroft } else { 1210 1.13 mycroft tp->th_code = htons((u_short)error); 1211 1.21 itojun strlcpy(tp->th_msg, pe->e_msg, msglen); 1212 1.1 cgd } 1213 1.24 christos if (debug) 1214 1.24 christos syslog(LOG_DEBUG, "Send NACK %s", tp->th_msg); 1215 1.21 itojun length = strlen(tp->th_msg); 1216 1.21 itojun msglen = &tp->th_msg[length + 1] - buf; 1217 1.44 buhrow if (sendto(peer, buf, msglen, 0, (struct sockaddr *)&from, fromlen) != (ssize_t)msglen) 1218 1.14 lukem syslog(LOG_ERR, "nak: %m"); 1219 1.9 mrg } 1220 1.9 mrg 1221 1.9 mrg static char * 1222 1.22 lukem verifyhost(struct sockaddr *fromp) 1223 1.9 mrg { 1224 1.18 itojun static char hbuf[MAXHOSTNAMELEN]; 1225 1.9 mrg 1226 1.20 itojun if (getnameinfo(fromp, fromp->sa_len, hbuf, sizeof(hbuf), NULL, 0, 0)) 1227 1.20 itojun strlcpy(hbuf, "?", sizeof(hbuf)); 1228 1.22 lukem return (hbuf); 1229 1.1 cgd } 1230