1 /* $NetBSD: rpcb_svc_com.c,v 1.6 2000/08/03 00:07:22 fvdl Exp $ */ 2 /* $FreeBSD$ */ 3 4 /* 5 * Sun RPC is a product of Sun Microsystems, Inc. and is provided for 6 * unrestricted use provided that this legend is included on all tape 7 * media and as a part of the software program in whole or part. Users 8 * may copy or modify Sun RPC without charge, but are not authorized 9 * to license or distribute it to anyone else except as part of a product or 10 * program developed by the user. 11 * 12 * SUN RPC IS PROVIDED AS IS WITH NO WARRANTIES OF ANY KIND INCLUDING THE 13 * WARRANTIES OF DESIGN, MERCHANTIBILITY AND FITNESS FOR A PARTICULAR 14 * PURPOSE, OR ARISING FROM A COURSE OF DEALING, USAGE OR TRADE PRACTICE. 15 * 16 * Sun RPC is provided with no support and without any obligation on the 17 * part of Sun Microsystems, Inc. to assist in its use, correction, 18 * modification or enhancement. 19 * 20 * SUN MICROSYSTEMS, INC. SHALL HAVE NO LIABILITY WITH RESPECT TO THE 21 * INFRINGEMENT OF COPYRIGHTS, TRADE SECRETS OR ANY PATENTS BY SUN RPC 22 * OR ANY PART THEREOF. 23 * 24 * In no event will Sun Microsystems, Inc. be liable for any lost revenue 25 * or profits or other special, indirect and consequential damages, even if 26 * Sun has been advised of the possibility of such damages. 27 * 28 * Sun Microsystems, Inc. 29 * 2550 Garcia Avenue 30 * Mountain View, California 94043 31 */ 32 /* 33 * Copyright (c) 1986 - 1991 by Sun Microsystems, Inc. 34 */ 35 36 /* #ident "@(#)rpcb_svc_com.c 1.18 94/05/02 SMI" */ 37 38 /* 39 * rpcb_svc_com.c 40 * The commom server procedure for the rpcbind. 41 */ 42 43 #include <sys/types.h> 44 #include <sys/stat.h> 45 #include <sys/param.h> 46 #include <sys/poll.h> 47 #include <sys/socket.h> 48 #include <rpc/rpc.h> 49 #include <rpc/rpcb_prot.h> 50 #include <rpc/svc_dg.h> 51 #include <netconfig.h> 52 #include <errno.h> 53 #include <syslog.h> 54 #include <unistd.h> 55 #include <stdio.h> 56 #ifdef PORTMAP 57 #include <netinet/in.h> 58 #include <rpc/pmap_prot.h> 59 #endif /* PORTMAP */ 60 #include <string.h> 61 #include <stdlib.h> 62 63 #include "rpcbind.h" 64 65 #define RPC_BUF_MAX 65536 /* can be raised if required */ 66 67 static char *nullstring = ""; 68 static int rpcb_rmtcalls; 69 70 struct rmtcallfd_list { 71 int fd; 72 SVCXPRT *xprt; 73 char *netid; 74 struct rmtcallfd_list *next; 75 }; 76 77 #define NFORWARD 64 78 #define MAXTIME_OFF 300 /* 5 minutes */ 79 80 struct finfo { 81 int flag; 82 #define FINFO_ACTIVE 0x1 83 u_int32_t caller_xid; 84 struct netbuf *caller_addr; 85 u_int32_t forward_xid; 86 int forward_fd; 87 char *uaddr; 88 rpcproc_t reply_type; 89 rpcvers_t versnum; 90 time_t time; 91 }; 92 static struct finfo FINFO[NFORWARD]; 93 94 95 static bool_t xdr_encap_parms __P((XDR *, struct encap_parms *)); 96 static bool_t xdr_rmtcall_args __P((XDR *, struct r_rmtcall_args *)); 97 static bool_t xdr_rmtcall_result __P((XDR *, struct r_rmtcall_args *)); 98 static bool_t xdr_opaque_parms __P((XDR *, struct r_rmtcall_args *)); 99 static int find_rmtcallfd_by_netid __P((char *)); 100 static SVCXPRT *find_rmtcallxprt_by_fd __P((int)); 101 static int forward_register __P((u_int32_t, struct netbuf *, int, char *, 102 rpcproc_t, rpcvers_t, u_int32_t *)); 103 static struct finfo *forward_find __P((u_int32_t)); 104 static int free_slot_by_xid __P((u_int32_t)); 105 static int free_slot_by_index __P((int)); 106 static int netbufcmp __P((struct netbuf *, struct netbuf *)); 107 static struct netbuf *netbufdup __P((struct netbuf *)); 108 static void netbuffree __P((struct netbuf *)); 109 static int check_rmtcalls __P((struct pollfd *, int)); 110 static void xprt_set_caller __P((SVCXPRT *, struct finfo *)); 111 static void send_svcsyserr __P((SVCXPRT *, struct finfo *)); 112 static void handle_reply __P((int, SVCXPRT *)); 113 static void find_versions __P((rpcprog_t, char *, rpcvers_t *, rpcvers_t *)); 114 static rpcblist_ptr find_service __P((rpcprog_t, rpcvers_t, char *)); 115 static char *getowner __P((SVCXPRT *, char *, size_t)); 116 static int add_pmaplist __P((RPCB *)); 117 static int del_pmaplist __P((RPCB *)); 118 119 /* 120 * Set a mapping of program, version, netid 121 */ 122 /* ARGSUSED */ 123 void * 124 rpcbproc_set_com(void *arg, struct svc_req *rqstp, SVCXPRT *transp, 125 rpcvers_t rpcbversnum) 126 { 127 RPCB *regp = (RPCB *)arg; 128 static bool_t ans; 129 char owner[64]; 130 131 #ifdef RPCBIND_DEBUG 132 if (debugging) 133 fprintf(stderr, "RPCB_SET request for (%lu, %lu, %s, %s) : ", 134 (unsigned long)regp->r_prog, (unsigned long)regp->r_vers, 135 regp->r_netid, regp->r_addr); 136 #endif 137 ans = map_set(regp, getowner(transp, owner, sizeof owner)); 138 #ifdef RPCBIND_DEBUG 139 if (debugging) 140 fprintf(stderr, "%s\n", ans == TRUE ? "succeeded" : "failed"); 141 #endif 142 /* XXX: should have used some defined constant here */ 143 rpcbs_set(rpcbversnum - 2, ans); 144 return (void *)&ans; 145 } 146 147 bool_t 148 map_set(RPCB *regp, char *owner) 149 { 150 RPCB reg, *a; 151 rpcblist_ptr rbl, fnd; 152 153 reg = *regp; 154 /* 155 * check to see if already used 156 * find_service returns a hit even if 157 * the versions don't match, so check for it 158 */ 159 fnd = find_service(reg.r_prog, reg.r_vers, reg.r_netid); 160 if (fnd && (fnd->rpcb_map.r_vers == reg.r_vers)) { 161 if (!strcmp(fnd->rpcb_map.r_addr, reg.r_addr)) 162 /* 163 * if these match then it is already 164 * registered so just say "OK". 165 */ 166 return (TRUE); 167 else 168 return (FALSE); 169 } 170 /* 171 * add to the end of the list 172 */ 173 rbl = (rpcblist_ptr) malloc((u_int)sizeof (RPCBLIST)); 174 if (rbl == (rpcblist_ptr)NULL) { 175 return (FALSE); 176 } 177 a = &(rbl->rpcb_map); 178 a->r_prog = reg.r_prog; 179 a->r_vers = reg.r_vers; 180 a->r_netid = strdup(reg.r_netid); 181 a->r_addr = strdup(reg.r_addr); 182 a->r_owner = strdup(owner); 183 if (!a->r_addr || !a->r_netid || !a->r_owner) { 184 if (a->r_netid) 185 free(a->r_netid); 186 if (a->r_addr) 187 free(a->r_addr); 188 if (a->r_owner) 189 free(a->r_owner); 190 free(rbl); 191 return (FALSE); 192 } 193 rbl->rpcb_next = (rpcblist_ptr)NULL; 194 if (list_rbl == NULL) { 195 list_rbl = rbl; 196 } else { 197 for (fnd = list_rbl; fnd->rpcb_next; 198 fnd = fnd->rpcb_next) 199 ; 200 fnd->rpcb_next = rbl; 201 } 202 #ifdef PORTMAP 203 (void) add_pmaplist(regp); 204 #endif 205 return (TRUE); 206 } 207 208 /* 209 * Unset a mapping of program, version, netid 210 */ 211 /* ARGSUSED */ 212 void * 213 rpcbproc_unset_com(void *arg, struct svc_req *rqstp, SVCXPRT *transp, 214 rpcvers_t rpcbversnum) 215 { 216 RPCB *regp = (RPCB *)arg; 217 static bool_t ans; 218 char owner[64]; 219 220 #ifdef RPCBIND_DEBUG 221 if (debugging) 222 fprintf(stderr, "RPCB_UNSET request for (%lu, %lu, %s) : ", 223 (unsigned long)regp->r_prog, (unsigned long)regp->r_vers, 224 regp->r_netid); 225 #endif 226 ans = map_unset(regp, getowner(transp, owner, sizeof owner)); 227 #ifdef RPCBIND_DEBUG 228 if (debugging) 229 fprintf(stderr, "%s\n", ans == TRUE ? "succeeded" : "failed"); 230 #endif 231 /* XXX: should have used some defined constant here */ 232 rpcbs_unset(rpcbversnum - 2, ans); 233 return (void *)&ans; 234 } 235 236 bool_t 237 map_unset(RPCB *regp, char *owner) 238 { 239 int ans = 0; 240 rpcblist_ptr rbl, prev, tmp; 241 242 if (owner == NULL) 243 return (0); 244 245 for (prev = NULL, rbl = list_rbl; rbl; /* cstyle */) { 246 if ((rbl->rpcb_map.r_prog != regp->r_prog) || 247 (rbl->rpcb_map.r_vers != regp->r_vers) || 248 (regp->r_netid[0] && strcasecmp(regp->r_netid, 249 rbl->rpcb_map.r_netid))) { 250 /* both rbl & prev move forwards */ 251 prev = rbl; 252 rbl = rbl->rpcb_next; 253 continue; 254 } 255 /* 256 * Check whether appropriate uid. Unset only 257 * if superuser or the owner itself. 258 */ 259 if (strcmp(owner, "superuser") && 260 strcmp(rbl->rpcb_map.r_owner, owner)) 261 return (0); 262 /* found it; rbl moves forward, prev stays */ 263 ans = 1; 264 tmp = rbl; 265 rbl = rbl->rpcb_next; 266 if (prev == NULL) 267 list_rbl = rbl; 268 else 269 prev->rpcb_next = rbl; 270 free(tmp->rpcb_map.r_addr); 271 free(tmp->rpcb_map.r_netid); 272 free(tmp->rpcb_map.r_owner); 273 free(tmp); 274 } 275 #ifdef PORTMAP 276 if (ans) 277 (void) del_pmaplist(regp); 278 #endif 279 /* 280 * We return 1 either when the entry was not there or it 281 * was able to unset it. It can come to this point only if 282 * atleast one of the conditions is true. 283 */ 284 return (1); 285 } 286 287 void 288 delete_prog(int prog) 289 { 290 RPCB reg; 291 register rpcblist_ptr rbl; 292 293 for (rbl = list_rbl; rbl != NULL; rbl = rbl->rpcb_next) { 294 if ((rbl->rpcb_map.r_prog != prog)) 295 continue; 296 if (is_bound(rbl->rpcb_map.r_netid, rbl->rpcb_map.r_addr)) 297 continue; 298 reg.r_prog = rbl->rpcb_map.r_prog; 299 reg.r_vers = rbl->rpcb_map.r_vers; 300 reg.r_netid = strdup(rbl->rpcb_map.r_netid); 301 (void) map_unset(®, "superuser"); 302 free(reg.r_netid); 303 } 304 } 305 306 void * 307 rpcbproc_getaddr_com(RPCB *regp, struct svc_req *rqstp, SVCXPRT *transp, 308 rpcvers_t rpcbversnum, rpcvers_t verstype) 309 { 310 static char *uaddr; 311 char *saddr = NULL; 312 rpcblist_ptr fnd; 313 314 if (uaddr != NULL && uaddr != nullstring) { 315 free(uaddr); 316 uaddr = NULL; 317 } 318 fnd = find_service(regp->r_prog, regp->r_vers, transp->xp_netid); 319 if (fnd && ((verstype == RPCB_ALLVERS) || 320 (regp->r_vers == fnd->rpcb_map.r_vers))) { 321 if (*(regp->r_addr) != '\0') { /* may contain a hint about */ 322 saddr = regp->r_addr; /* the interface that we */ 323 } /* should use */ 324 if (!(uaddr = mergeaddr(transp, transp->xp_netid, 325 fnd->rpcb_map.r_addr, saddr))) { 326 /* Try whatever we have */ 327 uaddr = strdup(fnd->rpcb_map.r_addr); 328 } else if (!uaddr[0]) { 329 /* 330 * The server died. Unset all versions of this prog. 331 */ 332 delete_prog(regp->r_prog); 333 uaddr = nullstring; 334 } 335 } else { 336 uaddr = nullstring; 337 } 338 #ifdef RPCBIND_DEBUG 339 if (debugging) 340 fprintf(stderr, "getaddr: %s\n", uaddr); 341 #endif 342 /* XXX: should have used some defined constant here */ 343 rpcbs_getaddr(rpcbversnum - 2, regp->r_prog, regp->r_vers, 344 transp->xp_netid, uaddr); 345 return (void *)&uaddr; 346 } 347 348 /* ARGSUSED */ 349 void * 350 rpcbproc_gettime_com(void *arg, struct svc_req *rqstp, SVCXPRT *transp, 351 rpcvers_t rpcbversnum) 352 { 353 static time_t curtime; 354 355 (void) time(&curtime); 356 return (void *)&curtime; 357 } 358 359 /* 360 * Convert uaddr to taddr. Should be used only by 361 * local servers/clients. (kernel level stuff only) 362 */ 363 /* ARGSUSED */ 364 void * 365 rpcbproc_uaddr2taddr_com(void *arg, struct svc_req *rqstp, SVCXPRT *transp, 366 rpcvers_t rpcbversnum) 367 { 368 char **uaddrp = (char **)arg; 369 struct netconfig *nconf; 370 static struct netbuf nbuf; 371 static struct netbuf *taddr; 372 373 if (taddr) { 374 free(taddr->buf); 375 free(taddr); 376 taddr = NULL; 377 } 378 if (((nconf = rpcbind_get_conf(transp->xp_netid)) == NULL) || 379 ((taddr = uaddr2taddr(nconf, *uaddrp)) == NULL)) { 380 (void) memset((char *)&nbuf, 0, sizeof (struct netbuf)); 381 return (void *)&nbuf; 382 } 383 return (void *)taddr; 384 } 385 386 /* 387 * Convert taddr to uaddr. Should be used only by 388 * local servers/clients. (kernel level stuff only) 389 */ 390 /* ARGSUSED */ 391 void * 392 rpcbproc_taddr2uaddr_com(void *arg, struct svc_req *rqstp, SVCXPRT *transp, 393 rpcvers_t rpcbversnum) 394 { 395 struct netbuf *taddr = (struct netbuf *)arg; 396 static char *uaddr; 397 struct netconfig *nconf; 398 399 #ifdef CHEW_FDS 400 int fd; 401 402 if ((fd = open("/dev/null", O_RDONLY)) == -1) { 403 uaddr = (char *)strerror(errno); 404 return (&uaddr); 405 } 406 #endif /* CHEW_FDS */ 407 if (uaddr != NULL && uaddr != nullstring) { 408 free(uaddr); 409 uaddr = NULL; 410 } 411 if (((nconf = rpcbind_get_conf(transp->xp_netid)) == NULL) || 412 ((uaddr = taddr2uaddr(nconf, taddr)) == NULL)) { 413 uaddr = nullstring; 414 } 415 return (void *)&uaddr; 416 } 417 418 419 static bool_t 420 xdr_encap_parms(XDR *xdrs, struct encap_parms *epp) 421 { 422 return (xdr_bytes(xdrs, &(epp->args), (u_int *) &(epp->arglen), ~0)); 423 } 424 425 /* 426 * XDR remote call arguments. It ignores the address part. 427 * written for XDR_DECODE direction only 428 */ 429 static bool_t 430 xdr_rmtcall_args(XDR *xdrs, struct r_rmtcall_args *cap) 431 { 432 /* does not get the address or the arguments */ 433 if (xdr_u_int32_t(xdrs, &(cap->rmt_prog)) && 434 xdr_u_int32_t(xdrs, &(cap->rmt_vers)) && 435 xdr_u_int32_t(xdrs, &(cap->rmt_proc))) { 436 return (xdr_encap_parms(xdrs, &(cap->rmt_args))); 437 } 438 return (FALSE); 439 } 440 441 /* 442 * XDR remote call results along with the address. Ignore 443 * program number, version number and proc number. 444 * Written for XDR_ENCODE direction only. 445 */ 446 static bool_t 447 xdr_rmtcall_result(XDR *xdrs, struct r_rmtcall_args *cap) 448 { 449 bool_t result; 450 451 #ifdef PORTMAP 452 if (cap->rmt_localvers == PMAPVERS) { 453 int h1, h2, h3, h4, p1, p2; 454 u_long port; 455 456 /* interpret the universal address for TCP/IP */ 457 if (sscanf(cap->rmt_uaddr, "%d.%d.%d.%d.%d.%d", 458 &h1, &h2, &h3, &h4, &p1, &p2) != 6) 459 return (FALSE); 460 port = ((p1 & 0xff) << 8) + (p2 & 0xff); 461 result = xdr_u_long(xdrs, &port); 462 } else 463 #endif 464 if ((cap->rmt_localvers == RPCBVERS) || 465 (cap->rmt_localvers == RPCBVERS4)) { 466 result = xdr_wrapstring(xdrs, &(cap->rmt_uaddr)); 467 } else { 468 return (FALSE); 469 } 470 if (result == TRUE) 471 return (xdr_encap_parms(xdrs, &(cap->rmt_args))); 472 return (FALSE); 473 } 474 475 /* 476 * only worries about the struct encap_parms part of struct r_rmtcall_args. 477 * The arglen must already be set!! 478 */ 479 static bool_t 480 xdr_opaque_parms(XDR *xdrs, struct r_rmtcall_args *cap) 481 { 482 return (xdr_opaque(xdrs, cap->rmt_args.args, cap->rmt_args.arglen)); 483 } 484 485 static struct rmtcallfd_list *rmthead; 486 static struct rmtcallfd_list *rmttail; 487 488 int 489 create_rmtcall_fd(struct netconfig *nconf) 490 { 491 int fd; 492 struct rmtcallfd_list *rmt; 493 SVCXPRT *xprt; 494 495 if ((fd = __rpc_nconf2fd(nconf)) == -1) { 496 if (debugging) 497 fprintf(stderr, 498 "create_rmtcall_fd: couldn't open \"%s\" (errno %d)\n", 499 nconf->nc_device, errno); 500 return (-1); 501 } 502 xprt = svc_tli_create(fd, 0, (struct t_bind *) 0, 0, 0); 503 if (xprt == NULL) { 504 if (debugging) 505 fprintf(stderr, 506 "create_rmtcall_fd: svc_tli_create failed\n"); 507 return (-1); 508 } 509 rmt = (struct rmtcallfd_list *)malloc((u_int) 510 sizeof (struct rmtcallfd_list)); 511 if (rmt == NULL) { 512 syslog(LOG_ERR, "create_rmtcall_fd: no memory!"); 513 return (-1); 514 } 515 rmt->xprt = xprt; 516 rmt->netid = strdup(nconf->nc_netid); 517 xprt->xp_netid = rmt->netid; 518 rmt->fd = fd; 519 rmt->next = NULL; 520 if (rmthead == NULL) { 521 rmthead = rmt; 522 rmttail = rmt; 523 } else { 524 rmttail->next = rmt; 525 rmttail = rmt; 526 } 527 /* XXX not threadsafe */ 528 if (fd > svc_maxfd) 529 svc_maxfd = fd; 530 FD_SET(fd, &svc_fdset); 531 return (fd); 532 } 533 534 static int 535 find_rmtcallfd_by_netid(char *netid) 536 { 537 struct rmtcallfd_list *rmt; 538 539 for (rmt = rmthead; rmt != NULL; rmt = rmt->next) { 540 if (strcmp(netid, rmt->netid) == 0) { 541 return (rmt->fd); 542 } 543 } 544 return (-1); 545 } 546 547 static SVCXPRT * 548 find_rmtcallxprt_by_fd(int fd) 549 { 550 struct rmtcallfd_list *rmt; 551 552 for (rmt = rmthead; rmt != NULL; rmt = rmt->next) { 553 if (fd == rmt->fd) { 554 return (rmt->xprt); 555 } 556 } 557 return (NULL); 558 } 559 560 561 /* 562 * Call a remote procedure service. This procedure is very quiet when things 563 * go wrong. The proc is written to support broadcast rpc. In the broadcast 564 * case, a machine should shut-up instead of complain, lest the requestor be 565 * overrun with complaints at the expense of not hearing a valid reply. 566 * When receiving a request and verifying that the service exists, we 567 * 568 * receive the request 569 * 570 * open a new TLI endpoint on the same transport on which we received 571 * the original request 572 * 573 * remember the original request's XID (which requires knowing the format 574 * of the svc_dg_data structure) 575 * 576 * forward the request, with a new XID, to the requested service, 577 * remembering the XID used to send this request (for later use in 578 * reassociating the answer with the original request), the requestor's 579 * address, the file descriptor on which the forwarded request is 580 * made and the service's address. 581 * 582 * mark the file descriptor on which we anticipate receiving a reply from 583 * the service and one to select for in our private svc_run procedure 584 * 585 * At some time in the future, a reply will be received from the service to 586 * which we forwarded the request. At that time, we detect that the socket 587 * used was for forwarding (by looking through the finfo structures to see 588 * whether the fd corresponds to one of those) and call handle_reply() to 589 * 590 * receive the reply 591 * 592 * bundle the reply, along with the service's universal address 593 * 594 * create a SVCXPRT structure and use a version of svc_sendreply 595 * that allows us to specify the reply XID and destination, send the reply 596 * to the original requestor. 597 */ 598 599 void 600 rpcbproc_callit_com(struct svc_req *rqstp, SVCXPRT *transp, 601 rpcproc_t reply_type, rpcvers_t versnum) 602 { 603 register rpcblist_ptr rbl; 604 struct netconfig *nconf; 605 struct netbuf *caller; 606 struct r_rmtcall_args a; 607 char *buf_alloc = NULL, *outbufp; 608 char *outbuf_alloc = NULL; 609 char buf[RPC_BUF_MAX], outbuf[RPC_BUF_MAX]; 610 struct netbuf *na = (struct netbuf *) NULL; 611 struct rpc_msg call_msg; 612 int outlen; 613 u_int sendsz; 614 XDR outxdr; 615 AUTH *auth; 616 int fd = -1; 617 char *uaddr, *m_uaddr = NULL, *local_uaddr = NULL; 618 u_int32_t *xidp; 619 struct __rpc_sockinfo si; 620 struct sockaddr *localsa; 621 struct netbuf tbuf; 622 623 if (!__rpc_fd2sockinfo(transp->xp_fd, &si)) { 624 if (reply_type == RPCBPROC_INDIRECT) 625 svcerr_systemerr(transp); 626 return; 627 } 628 if (si.si_socktype != SOCK_DGRAM) 629 return; /* Only datagram type accepted */ 630 sendsz = __rpc_get_t_size(si.si_af, si.si_proto, UDPMSGSIZE); 631 if (sendsz == 0) { /* data transfer not supported */ 632 if (reply_type == RPCBPROC_INDIRECT) 633 svcerr_systemerr(transp); 634 return; 635 } 636 /* 637 * Should be multiple of 4 for XDR. 638 */ 639 sendsz = ((sendsz + 3) / 4) * 4; 640 if (sendsz > RPC_BUF_MAX) { 641 #ifdef notyet 642 buf_alloc = alloca(sendsz); /* not in IDR2? */ 643 #else 644 buf_alloc = malloc(sendsz); 645 #endif /* notyet */ 646 if (buf_alloc == NULL) { 647 if (debugging) 648 fprintf(stderr, 649 "rpcbproc_callit_com: No Memory!\n"); 650 if (reply_type == RPCBPROC_INDIRECT) 651 svcerr_systemerr(transp); 652 return; 653 } 654 a.rmt_args.args = buf_alloc; 655 } else { 656 a.rmt_args.args = buf; 657 } 658 659 call_msg.rm_xid = 0; /* For error checking purposes */ 660 if (!svc_getargs(transp, (xdrproc_t) xdr_rmtcall_args, (char *) &a)) { 661 if (reply_type == RPCBPROC_INDIRECT) 662 svcerr_decode(transp); 663 if (debugging) 664 fprintf(stderr, 665 "rpcbproc_callit_com: svc_getargs failed\n"); 666 goto error; 667 } 668 669 if (!check_callit(transp, &a, versnum)) { 670 svcerr_weakauth(transp); 671 goto error; 672 } 673 674 caller = svc_getrpccaller(transp); 675 #ifdef RPCBIND_DEBUG 676 if (debugging) { 677 uaddr = taddr2uaddr(rpcbind_get_conf(transp->xp_netid), caller); 678 fprintf(stderr, "%s %s req for (%lu, %lu, %lu, %s) from %s : ", 679 versnum == PMAPVERS ? "pmap_rmtcall" : 680 versnum == RPCBVERS ? "rpcb_rmtcall" : 681 versnum == RPCBVERS4 ? "rpcb_indirect" : "unknown", 682 reply_type == RPCBPROC_INDIRECT ? "indirect" : "callit", 683 (unsigned long)a.rmt_prog, (unsigned long)a.rmt_vers, 684 (unsigned long)a.rmt_proc, transp->xp_netid, 685 uaddr ? uaddr : "unknown"); 686 if (uaddr) 687 free(uaddr); 688 } 689 #endif 690 691 rbl = find_service(a.rmt_prog, a.rmt_vers, transp->xp_netid); 692 693 rpcbs_rmtcall(versnum - 2, reply_type, a.rmt_prog, a.rmt_vers, 694 a.rmt_proc, transp->xp_netid, rbl); 695 696 if (rbl == (rpcblist_ptr)NULL) { 697 #ifdef RPCBIND_DEBUG 698 if (debugging) 699 fprintf(stderr, "not found\n"); 700 #endif 701 if (reply_type == RPCBPROC_INDIRECT) 702 svcerr_noprog(transp); 703 goto error; 704 } 705 if (rbl->rpcb_map.r_vers != a.rmt_vers) { 706 if (reply_type == RPCBPROC_INDIRECT) { 707 rpcvers_t vers_low, vers_high; 708 709 find_versions(a.rmt_prog, transp->xp_netid, 710 &vers_low, &vers_high); 711 svcerr_progvers(transp, vers_low, vers_high); 712 } 713 goto error; 714 } 715 716 #ifdef RPCBIND_DEBUG 717 if (debugging) 718 fprintf(stderr, "found at uaddr %s\n", rbl->rpcb_map.r_addr); 719 #endif 720 /* 721 * Check whether this entry is valid and a server is present 722 * Mergeaddr() returns NULL if no such entry is present, and 723 * returns "" if the entry was present but the server is not 724 * present (i.e., it crashed). 725 */ 726 if (reply_type == RPCBPROC_INDIRECT) { 727 uaddr = mergeaddr(transp, transp->xp_netid, 728 rbl->rpcb_map.r_addr, NULL); 729 if (uaddr == NULL || uaddr[0] == '\0') { 730 svcerr_noprog(transp); 731 if (uaddr != NULL) 732 free(uaddr); 733 goto error; 734 } 735 free(uaddr); 736 } 737 nconf = rpcbind_get_conf(transp->xp_netid); 738 if (nconf == (struct netconfig *)NULL) { 739 if (reply_type == RPCBPROC_INDIRECT) 740 svcerr_systemerr(transp); 741 if (debugging) 742 fprintf(stderr, 743 "rpcbproc_callit_com: rpcbind_get_conf failed\n"); 744 goto error; 745 } 746 localsa = local_sa(((struct sockaddr *)caller->buf)->sa_family); 747 if (localsa == NULL) { 748 if (debugging) 749 fprintf(stderr, 750 "rpcbproc_callit_com: no local address\n"); 751 goto error; 752 } 753 tbuf.len = tbuf.maxlen = localsa->sa_len; 754 tbuf.buf = localsa; 755 local_uaddr = 756 addrmerge(&tbuf, rbl->rpcb_map.r_addr, NULL, nconf->nc_netid); 757 m_uaddr = addrmerge(caller, rbl->rpcb_map.r_addr, NULL, 758 nconf->nc_netid); 759 #ifdef RPCBIND_DEBUG 760 if (debugging) 761 fprintf(stderr, "merged uaddr %s\n", m_uaddr); 762 #endif 763 if ((fd = find_rmtcallfd_by_netid(nconf->nc_netid)) == -1) { 764 if (reply_type == RPCBPROC_INDIRECT) 765 svcerr_systemerr(transp); 766 goto error; 767 } 768 xidp = __rpcb_get_dg_xidp(transp); 769 switch (forward_register(*xidp, caller, fd, m_uaddr, reply_type, 770 versnum, &call_msg.rm_xid)) { 771 case 1: 772 /* Success; forward_register() will free m_uaddr for us. */ 773 m_uaddr = NULL; 774 break; 775 case 0: 776 /* 777 * A duplicate request for the slow server. Let's not 778 * beat on it any more. 779 */ 780 if (debugging) 781 fprintf(stderr, 782 "rpcbproc_callit_com: duplicate request\n"); 783 goto error; 784 case -1: 785 /* forward_register failed. Perhaps no memory. */ 786 if (debugging) 787 fprintf(stderr, 788 "rpcbproc_callit_com: forward_register failed\n"); 789 goto error; 790 } 791 792 #ifdef DEBUG_RMTCALL 793 if (debugging) 794 fprintf(stderr, 795 "rpcbproc_callit_com: original XID %x, new XID %x\n", 796 *xidp, call_msg.rm_xid); 797 #endif 798 call_msg.rm_direction = CALL; 799 call_msg.rm_call.cb_rpcvers = RPC_MSG_VERSION; 800 call_msg.rm_call.cb_prog = a.rmt_prog; 801 call_msg.rm_call.cb_vers = a.rmt_vers; 802 if (sendsz > RPC_BUF_MAX) { 803 #ifdef notyet 804 outbuf_alloc = alloca(sendsz); /* not in IDR2? */ 805 #else 806 outbuf_alloc = malloc(sendsz); 807 #endif /* notyet */ 808 if (outbuf_alloc == NULL) { 809 if (reply_type == RPCBPROC_INDIRECT) 810 svcerr_systemerr(transp); 811 if (debugging) 812 fprintf(stderr, 813 "rpcbproc_callit_com: No memory!\n"); 814 goto error; 815 } 816 xdrmem_create(&outxdr, outbuf_alloc, sendsz, XDR_ENCODE); 817 } else { 818 xdrmem_create(&outxdr, outbuf, sendsz, XDR_ENCODE); 819 } 820 if (!xdr_callhdr(&outxdr, &call_msg)) { 821 if (reply_type == RPCBPROC_INDIRECT) 822 svcerr_systemerr(transp); 823 if (debugging) 824 fprintf(stderr, 825 "rpcbproc_callit_com: xdr_callhdr failed\n"); 826 goto error; 827 } 828 if (!xdr_u_int32_t(&outxdr, &(a.rmt_proc))) { 829 if (reply_type == RPCBPROC_INDIRECT) 830 svcerr_systemerr(transp); 831 if (debugging) 832 fprintf(stderr, 833 "rpcbproc_callit_com: xdr_u_long failed\n"); 834 goto error; 835 } 836 837 if (rqstp->rq_cred.oa_flavor == AUTH_NULL) { 838 auth = authnone_create(); 839 } else if (rqstp->rq_cred.oa_flavor == AUTH_SYS) { 840 struct authunix_parms *au; 841 842 au = (struct authunix_parms *)rqstp->rq_clntcred; 843 auth = authunix_create(au->aup_machname, 844 au->aup_uid, au->aup_gid, 845 au->aup_len, au->aup_gids); 846 if (auth == NULL) /* fall back */ 847 auth = authnone_create(); 848 } else { 849 /* we do not support any other authentication scheme */ 850 if (debugging) 851 fprintf(stderr, 852 "rpcbproc_callit_com: oa_flavor != AUTH_NONE and oa_flavor != AUTH_SYS\n"); 853 if (reply_type == RPCBPROC_INDIRECT) 854 svcerr_weakauth(transp); /* XXX too strong.. */ 855 goto error; 856 } 857 if (auth == NULL) { 858 if (reply_type == RPCBPROC_INDIRECT) 859 svcerr_systemerr(transp); 860 if (debugging) 861 fprintf(stderr, 862 "rpcbproc_callit_com: authwhatever_create returned NULL\n"); 863 goto error; 864 } 865 if (!AUTH_MARSHALL(auth, &outxdr)) { 866 if (reply_type == RPCBPROC_INDIRECT) 867 svcerr_systemerr(transp); 868 AUTH_DESTROY(auth); 869 if (debugging) 870 fprintf(stderr, 871 "rpcbproc_callit_com: AUTH_MARSHALL failed\n"); 872 goto error; 873 } 874 AUTH_DESTROY(auth); 875 if (!xdr_opaque_parms(&outxdr, &a)) { 876 if (reply_type == RPCBPROC_INDIRECT) 877 svcerr_systemerr(transp); 878 if (debugging) 879 fprintf(stderr, 880 "rpcbproc_callit_com: xdr_opaque_parms failed\n"); 881 goto error; 882 } 883 outlen = (int) XDR_GETPOS(&outxdr); 884 if (outbuf_alloc) 885 outbufp = outbuf_alloc; 886 else 887 outbufp = outbuf; 888 889 na = uaddr2taddr(nconf, local_uaddr); 890 if (!na) { 891 if (reply_type == RPCBPROC_INDIRECT) 892 svcerr_systemerr(transp); 893 goto error; 894 } 895 896 if (sendto(fd, outbufp, outlen, 0, (struct sockaddr *)na->buf, na->len) 897 != outlen) { 898 if (debugging) 899 fprintf(stderr, 900 "rpcbproc_callit_com: sendto failed: errno %d\n", errno); 901 if (reply_type == RPCBPROC_INDIRECT) 902 svcerr_systemerr(transp); 903 goto error; 904 } 905 goto out; 906 907 error: 908 if (call_msg.rm_xid != 0) 909 (void) free_slot_by_xid(call_msg.rm_xid); 910 out: 911 if (local_uaddr) 912 free(local_uaddr); 913 if (buf_alloc) 914 free(buf_alloc); 915 if (outbuf_alloc) 916 free(outbuf_alloc); 917 if (na) { 918 free(na->buf); 919 free(na); 920 } 921 if (m_uaddr != NULL) 922 free(m_uaddr); 923 } 924 925 /* 926 * Makes an entry into the FIFO for the given request. 927 * Returns 1 on success, 0 if this is a duplicate request, or -1 on error. 928 * *callxidp is set to the xid of the call. 929 */ 930 static int 931 forward_register(u_int32_t caller_xid, struct netbuf *caller_addr, 932 int forward_fd, char *uaddr, rpcproc_t reply_type, 933 rpcvers_t versnum, u_int32_t *callxidp) 934 { 935 int i; 936 int j = 0; 937 time_t min_time, time_now; 938 static u_int32_t lastxid; 939 int entry = -1; 940 941 min_time = FINFO[0].time; 942 time_now = time((time_t *)0); 943 /* initialization */ 944 if (lastxid == 0) 945 lastxid = time_now * NFORWARD; 946 947 /* 948 * Check if it is an duplicate entry. Then, 949 * try to find an empty slot. If not available, then 950 * use the slot with the earliest time. 951 */ 952 for (i = 0; i < NFORWARD; i++) { 953 if (FINFO[i].flag & FINFO_ACTIVE) { 954 if ((FINFO[i].caller_xid == caller_xid) && 955 (FINFO[i].reply_type == reply_type) && 956 (FINFO[i].versnum == versnum) && 957 (!netbufcmp(FINFO[i].caller_addr, 958 caller_addr))) { 959 FINFO[i].time = time((time_t *)0); 960 return (0); /* Duplicate entry */ 961 } else { 962 /* Should we wait any longer */ 963 if ((time_now - FINFO[i].time) > MAXTIME_OFF) 964 (void) free_slot_by_index(i); 965 } 966 } 967 if (entry == -1) { 968 if ((FINFO[i].flag & FINFO_ACTIVE) == 0) { 969 entry = i; 970 } else if (FINFO[i].time < min_time) { 971 j = i; 972 min_time = FINFO[i].time; 973 } 974 } 975 } 976 if (entry != -1) { 977 /* use this empty slot */ 978 j = entry; 979 } else { 980 (void) free_slot_by_index(j); 981 } 982 if ((FINFO[j].caller_addr = netbufdup(caller_addr)) == NULL) { 983 return (-1); 984 } 985 rpcb_rmtcalls++; /* no of pending calls */ 986 FINFO[j].flag = FINFO_ACTIVE; 987 FINFO[j].reply_type = reply_type; 988 FINFO[j].versnum = versnum; 989 FINFO[j].time = time_now; 990 FINFO[j].caller_xid = caller_xid; 991 FINFO[j].forward_fd = forward_fd; 992 /* 993 * Though uaddr is not allocated here, it will still be freed 994 * from free_slot_*(). 995 */ 996 FINFO[j].uaddr = uaddr; 997 lastxid = lastxid + NFORWARD; 998 /* Don't allow a zero xid below. */ 999 if ((u_int32_t)(lastxid + NFORWARD) <= NFORWARD) 1000 lastxid = NFORWARD; 1001 FINFO[j].forward_xid = lastxid + j; /* encode slot */ 1002 *callxidp = FINFO[j].forward_xid; /* forward on this xid */ 1003 return (1); 1004 } 1005 1006 static struct finfo * 1007 forward_find(u_int32_t reply_xid) 1008 { 1009 int i; 1010 1011 i = reply_xid % (u_int32_t)NFORWARD; 1012 if ((FINFO[i].flag & FINFO_ACTIVE) && 1013 (FINFO[i].forward_xid == reply_xid)) { 1014 return (&FINFO[i]); 1015 } 1016 return (NULL); 1017 } 1018 1019 static int 1020 free_slot_by_xid(u_int32_t xid) 1021 { 1022 int entry; 1023 1024 entry = xid % (u_int32_t)NFORWARD; 1025 return (free_slot_by_index(entry)); 1026 } 1027 1028 static int 1029 free_slot_by_index(int index) 1030 { 1031 struct finfo *fi; 1032 1033 fi = &FINFO[index]; 1034 if (fi->flag & FINFO_ACTIVE) { 1035 netbuffree(fi->caller_addr); 1036 /* XXX may be too big, but can't access xprt array here */ 1037 if (fi->forward_fd >= svc_maxfd) 1038 svc_maxfd--; 1039 free(fi->uaddr); 1040 fi->flag &= ~FINFO_ACTIVE; 1041 rpcb_rmtcalls--; 1042 return (1); 1043 } 1044 return (0); 1045 } 1046 1047 static int 1048 netbufcmp(struct netbuf *n1, struct netbuf *n2) 1049 { 1050 return ((n1->len != n2->len) || memcmp(n1->buf, n2->buf, n1->len)); 1051 } 1052 1053 static struct netbuf * 1054 netbufdup(struct netbuf *ap) 1055 { 1056 struct netbuf *np; 1057 1058 if ((np = malloc(sizeof(struct netbuf))) == NULL) 1059 return (NULL); 1060 if ((np->buf = malloc(ap->len)) == NULL) { 1061 free(np); 1062 return (NULL); 1063 } 1064 np->maxlen = np->len = ap->len; 1065 memcpy(np->buf, ap->buf, ap->len); 1066 return (np); 1067 } 1068 1069 static void 1070 netbuffree(struct netbuf *ap) 1071 { 1072 free(ap->buf); 1073 free(ap); 1074 } 1075 1076 1077 #define MASKVAL (POLLIN | POLLPRI | POLLRDNORM | POLLRDBAND) 1078 1079 void 1080 my_svc_run() 1081 { 1082 size_t nfds; 1083 struct pollfd pollfds[FD_SETSIZE]; 1084 int poll_ret, check_ret; 1085 int n; 1086 #ifdef SVC_RUN_DEBUG 1087 int i; 1088 #endif 1089 register struct pollfd *p; 1090 1091 for (;;) { 1092 p = pollfds; 1093 for (n = 0; n <= svc_maxfd; n++) { 1094 if (FD_ISSET(n, &svc_fdset)) { 1095 p->fd = n; 1096 p->events = MASKVAL; 1097 p++; 1098 } 1099 } 1100 nfds = p - pollfds; 1101 poll_ret = 0; 1102 #ifdef SVC_RUN_DEBUG 1103 if (debugging) { 1104 fprintf(stderr, "polling for read on fd < "); 1105 for (i = 0, p = pollfds; i < nfds; i++, p++) 1106 if (p->events) 1107 fprintf(stderr, "%d ", p->fd); 1108 fprintf(stderr, ">\n"); 1109 } 1110 #endif 1111 switch (poll_ret = poll(pollfds, nfds, INFTIM)) { 1112 case -1: 1113 /* 1114 * We ignore all errors, continuing with the assumption 1115 * that it was set by the signal handlers (or any 1116 * other outside event) and not caused by poll(). 1117 */ 1118 case 0: 1119 continue; 1120 default: 1121 #ifdef SVC_RUN_DEBUG 1122 if (debugging) { 1123 fprintf(stderr, "poll returned read fds < "); 1124 for (i = 0, p = pollfds; i < nfds; i++, p++) 1125 if (p->revents) 1126 fprintf(stderr, "%d ", p->fd); 1127 fprintf(stderr, ">\n"); 1128 } 1129 #endif 1130 /* 1131 * If we found as many replies on callback fds 1132 * as the number of descriptors selectable which 1133 * poll() returned, there can be no more so we 1134 * don't call svc_getreq_poll. Otherwise, there 1135 * must be another so we must call svc_getreq_poll. 1136 */ 1137 if ((check_ret = check_rmtcalls(pollfds, nfds)) == 1138 poll_ret) 1139 continue; 1140 svc_getreq_poll(pollfds, poll_ret-check_ret); 1141 } 1142 #ifdef SVC_RUN_DEBUG 1143 if (debugging) { 1144 fprintf(stderr, "svc_maxfd now %u\n", svc_maxfd); 1145 } 1146 #endif 1147 } 1148 } 1149 1150 static int 1151 check_rmtcalls(struct pollfd *pfds, int nfds) 1152 { 1153 int j, ncallbacks_found = 0, rmtcalls_pending; 1154 SVCXPRT *xprt; 1155 1156 if (rpcb_rmtcalls == 0) 1157 return (0); 1158 1159 rmtcalls_pending = rpcb_rmtcalls; 1160 for (j = 0; j < nfds; j++) { 1161 if ((xprt = find_rmtcallxprt_by_fd(pfds[j].fd)) != NULL) { 1162 if (pfds[j].revents) { 1163 ncallbacks_found++; 1164 #ifdef DEBUG_RMTCALL 1165 if (debugging) 1166 fprintf(stderr, 1167 "my_svc_run: polled on forwarding fd %d, netid %s - calling handle_reply\n", 1168 pfds[j].fd, xprt->xp_netid); 1169 #endif 1170 handle_reply(pfds[j].fd, xprt); 1171 pfds[j].revents = 0; 1172 if (ncallbacks_found >= rmtcalls_pending) { 1173 break; 1174 } 1175 } 1176 } 1177 } 1178 return (ncallbacks_found); 1179 } 1180 1181 static void 1182 xprt_set_caller(SVCXPRT *xprt, struct finfo *fi) 1183 { 1184 u_int32_t *xidp; 1185 1186 *(svc_getrpccaller(xprt)) = *(fi->caller_addr); 1187 xidp = __rpcb_get_dg_xidp(xprt); 1188 *xidp = fi->caller_xid; 1189 } 1190 1191 /* 1192 * Call svcerr_systemerr() only if RPCBVERS4 1193 */ 1194 static void 1195 send_svcsyserr(SVCXPRT *xprt, struct finfo *fi) 1196 { 1197 if (fi->reply_type == RPCBPROC_INDIRECT) { 1198 xprt_set_caller(xprt, fi); 1199 svcerr_systemerr(xprt); 1200 } 1201 return; 1202 } 1203 1204 static void 1205 handle_reply(int fd, SVCXPRT *xprt) 1206 { 1207 XDR reply_xdrs; 1208 struct rpc_msg reply_msg; 1209 struct rpc_err reply_error; 1210 char *buffer; 1211 struct finfo *fi; 1212 int inlen, pos, len; 1213 struct r_rmtcall_args a; 1214 struct sockaddr_storage ss; 1215 socklen_t fromlen; 1216 #ifdef SVC_RUN_DEBUG 1217 char *uaddr; 1218 #endif 1219 1220 buffer = malloc(RPC_BUF_MAX); 1221 if (buffer == NULL) 1222 goto done; 1223 1224 do { 1225 inlen = recvfrom(fd, buffer, RPC_BUF_MAX, 0, 1226 (struct sockaddr *)&ss, &fromlen); 1227 } while (inlen < 0 && errno == EINTR); 1228 if (inlen < 0) { 1229 if (debugging) 1230 fprintf(stderr, 1231 "handle_reply: recvfrom returned %d, errno %d\n", inlen, errno); 1232 goto done; 1233 } 1234 1235 reply_msg.acpted_rply.ar_verf = _null_auth; 1236 reply_msg.acpted_rply.ar_results.where = 0; 1237 reply_msg.acpted_rply.ar_results.proc = (xdrproc_t) xdr_void; 1238 1239 xdrmem_create(&reply_xdrs, buffer, (u_int)inlen, XDR_DECODE); 1240 if (!xdr_replymsg(&reply_xdrs, &reply_msg)) { 1241 if (debugging) 1242 (void) fprintf(stderr, 1243 "handle_reply: xdr_replymsg failed\n"); 1244 goto done; 1245 } 1246 fi = forward_find(reply_msg.rm_xid); 1247 #ifdef SVC_RUN_DEBUG 1248 if (debugging) { 1249 fprintf(stderr, "handle_reply: reply xid: %d fi addr: %p\n", 1250 reply_msg.rm_xid, fi); 1251 } 1252 #endif 1253 if (fi == NULL) { 1254 goto done; 1255 } 1256 _seterr_reply(&reply_msg, &reply_error); 1257 if (reply_error.re_status != RPC_SUCCESS) { 1258 if (debugging) 1259 (void) fprintf(stderr, "handle_reply: %s\n", 1260 clnt_sperrno(reply_error.re_status)); 1261 send_svcsyserr(xprt, fi); 1262 goto done; 1263 } 1264 pos = XDR_GETPOS(&reply_xdrs); 1265 len = inlen - pos; 1266 a.rmt_args.args = &buffer[pos]; 1267 a.rmt_args.arglen = len; 1268 a.rmt_uaddr = fi->uaddr; 1269 a.rmt_localvers = fi->versnum; 1270 1271 xprt_set_caller(xprt, fi); 1272 #ifdef SVC_RUN_DEBUG 1273 uaddr = taddr2uaddr(rpcbind_get_conf("udp"), 1274 svc_getrpccaller(xprt)); 1275 if (debugging) { 1276 fprintf(stderr, "handle_reply: forwarding address %s to %s\n", 1277 a.rmt_uaddr, uaddr ? uaddr : "unknown"); 1278 } 1279 if (uaddr) 1280 free(uaddr); 1281 #endif 1282 svc_sendreply(xprt, (xdrproc_t) xdr_rmtcall_result, (char *) &a); 1283 done: 1284 if (buffer) 1285 free(buffer); 1286 1287 if (reply_msg.rm_xid == 0) { 1288 #ifdef SVC_RUN_DEBUG 1289 if (debugging) { 1290 fprintf(stderr, "handle_reply: NULL xid on exit!\n"); 1291 } 1292 #endif 1293 } else 1294 (void) free_slot_by_xid(reply_msg.rm_xid); 1295 return; 1296 } 1297 1298 static void 1299 find_versions(rpcprog_t prog, char *netid, rpcvers_t *lowvp, rpcvers_t *highvp) 1300 { 1301 register rpcblist_ptr rbl; 1302 int lowv = 0; 1303 int highv = 0; 1304 1305 for (rbl = list_rbl; rbl != NULL; rbl = rbl->rpcb_next) { 1306 if ((rbl->rpcb_map.r_prog != prog) || 1307 ((rbl->rpcb_map.r_netid != NULL) && 1308 (strcasecmp(rbl->rpcb_map.r_netid, netid) != 0))) 1309 continue; 1310 if (lowv == 0) { 1311 highv = rbl->rpcb_map.r_vers; 1312 lowv = highv; 1313 } else if (rbl->rpcb_map.r_vers < lowv) { 1314 lowv = rbl->rpcb_map.r_vers; 1315 } else if (rbl->rpcb_map.r_vers > highv) { 1316 highv = rbl->rpcb_map.r_vers; 1317 } 1318 } 1319 *lowvp = lowv; 1320 *highvp = highv; 1321 return; 1322 } 1323 1324 /* 1325 * returns the item with the given program, version number and netid. 1326 * If that version number is not found, it returns the item with that 1327 * program number, so that address is now returned to the caller. The 1328 * caller when makes a call to this program, version number, the call 1329 * will fail and it will return with PROGVERS_MISMATCH. The user can 1330 * then determine the highest and the lowest version number for this 1331 * program using clnt_geterr() and use those program version numbers. 1332 * 1333 * Returns the RPCBLIST for the given prog, vers and netid 1334 */ 1335 static rpcblist_ptr 1336 find_service(rpcprog_t prog, rpcvers_t vers, char *netid) 1337 { 1338 register rpcblist_ptr hit = NULL; 1339 register rpcblist_ptr rbl; 1340 1341 for (rbl = list_rbl; rbl != NULL; rbl = rbl->rpcb_next) { 1342 if ((rbl->rpcb_map.r_prog != prog) || 1343 ((rbl->rpcb_map.r_netid != NULL) && 1344 (strcasecmp(rbl->rpcb_map.r_netid, netid) != 0))) 1345 continue; 1346 hit = rbl; 1347 if (rbl->rpcb_map.r_vers == vers) 1348 break; 1349 } 1350 return (hit); 1351 } 1352 1353 /* 1354 * Copies the name associated with the uid of the caller and returns 1355 * a pointer to it. Similar to getwd(). 1356 */ 1357 static char * 1358 getowner(SVCXPRT *transp, char *owner, size_t ownersize) 1359 { 1360 uid_t uid; 1361 1362 if (__rpc_get_local_uid(transp, &uid) < 0) 1363 strlcpy(owner, "unknown", ownersize); 1364 else if (uid == 0) 1365 strlcpy(owner, "superuser", ownersize); 1366 else 1367 snprintf(owner, ownersize, "%d", uid); 1368 1369 return owner; 1370 } 1371 1372 #ifdef PORTMAP 1373 /* 1374 * Add this to the pmap list only if it is UDP or TCP. 1375 */ 1376 static int 1377 add_pmaplist(RPCB *arg) 1378 { 1379 struct pmap pmap; 1380 struct pmaplist *pml; 1381 int h1, h2, h3, h4, p1, p2; 1382 1383 if (strcmp(arg->r_netid, udptrans) == 0) { 1384 /* It is UDP! */ 1385 pmap.pm_prot = IPPROTO_UDP; 1386 } else if (strcmp(arg->r_netid, tcptrans) == 0) { 1387 /* It is TCP */ 1388 pmap.pm_prot = IPPROTO_TCP; 1389 } else 1390 /* Not a IP protocol */ 1391 return (0); 1392 1393 /* interpret the universal address for TCP/IP */ 1394 if (sscanf(arg->r_addr, "%d.%d.%d.%d.%d.%d", 1395 &h1, &h2, &h3, &h4, &p1, &p2) != 6) 1396 return (0); 1397 pmap.pm_port = ((p1 & 0xff) << 8) + (p2 & 0xff); 1398 pmap.pm_prog = arg->r_prog; 1399 pmap.pm_vers = arg->r_vers; 1400 /* 1401 * add to END of list 1402 */ 1403 pml = (struct pmaplist *) malloc((u_int)sizeof (struct pmaplist)); 1404 if (pml == NULL) { 1405 (void) syslog(LOG_ERR, "rpcbind: no memory!\n"); 1406 return (1); 1407 } 1408 pml->pml_map = pmap; 1409 pml->pml_next = NULL; 1410 if (list_pml == NULL) { 1411 list_pml = pml; 1412 } else { 1413 struct pmaplist *fnd; 1414 1415 /* Attach to the end of the list */ 1416 for (fnd = list_pml; fnd->pml_next; fnd = fnd->pml_next) 1417 ; 1418 fnd->pml_next = pml; 1419 } 1420 return (0); 1421 } 1422 1423 /* 1424 * Delete this from the pmap list only if it is UDP or TCP. 1425 */ 1426 static int 1427 del_pmaplist(RPCB *arg) 1428 { 1429 struct pmaplist *pml; 1430 struct pmaplist *prevpml, *fnd; 1431 long prot; 1432 1433 if (strcmp(arg->r_netid, udptrans) == 0) { 1434 /* It is UDP! */ 1435 prot = IPPROTO_UDP; 1436 } else if (strcmp(arg->r_netid, tcptrans) == 0) { 1437 /* It is TCP */ 1438 prot = IPPROTO_TCP; 1439 } else if (arg->r_netid[0] == NULL) { 1440 prot = 0; /* Remove all occurrences */ 1441 } else { 1442 /* Not a IP protocol */ 1443 return (0); 1444 } 1445 for (prevpml = NULL, pml = list_pml; pml; /* cstyle */) { 1446 if ((pml->pml_map.pm_prog != arg->r_prog) || 1447 (pml->pml_map.pm_vers != arg->r_vers) || 1448 (prot && (pml->pml_map.pm_prot != prot))) { 1449 /* both pml & prevpml move forwards */ 1450 prevpml = pml; 1451 pml = pml->pml_next; 1452 continue; 1453 } 1454 /* found it; pml moves forward, prevpml stays */ 1455 fnd = pml; 1456 pml = pml->pml_next; 1457 if (prevpml == NULL) 1458 list_pml = pml; 1459 else 1460 prevpml->pml_next = pml; 1461 free(fnd); 1462 } 1463 return (0); 1464 } 1465 #endif /* PORTMAP */ 1466